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  • Articles  (283,235)
  • 1985-1989
  • 1980-1984  (205,920)
  • 1960-1964  (77,315)
  • 1940-1944
  • 1984  (205,920)
  • 1961  (77,315)
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  • 1985-1989
  • 1980-1984  (205,920)
  • 1960-1964  (77,315)
  • 1940-1944
Year
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  • 1
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    Zeitschrift für Gletscherkunde und Glazialgeologie
    In:  EPIC3Innsbruck, Zeitschrift für Gletscherkunde und Glazialgeologie
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
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  • 2
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    Zeitschrift für Gletscherkunde und Glazialgeologie
    In:  EPIC3Innsbruck, Zeitschrift für Gletscherkunde und Glazialgeologie
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
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  • 3
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    Alfred Wegener Institute for Polar and Marine Research
    In:  EPIC3Bremerhaven, Alfred Wegener Institute for Polar and Marine Research
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
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  • 4
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    Alfred Wegener Institute for Polar and Marine Research
    In:  EPIC3Bremerhaven, Alfred Wegener Institute for Polar and Marine Research
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
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  • 5
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    Alfred Wegener Institute for Polar and Marine Research
    In:  EPIC3Bremerhaven, Alfred Wegener Institute for Polar and Marine Research
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
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  • 6
    Publication Date: 2017-02-09
    Repository Name: EPIC Alfred Wegener Institut
    Type: Thesis , notRev
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  • 7
    Publication Date: 2016-10-06
    Description: https://www.researchgate.net/publication/230891291_The_Orbital_Theory_of_Pleistocene_Climate_Support_frim_a_Revised_Chronology_of_the_Marine_d18O_Record
    Repository Name: EPIC Alfred Wegener Institut
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  • 8
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    PANGAEA
    In:  EPIC3Bremerhaven, PANGAEA
    Publication Date: 2016-08-25
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
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  • 9
    Publication Date: 2018-04-03
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
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  • 10
    Publication Date: 2018-08-28
    Description: Summary Holocene sediments of the North Lagoon, Bermuda, were studied with shallow seismic reflection profiles (200 km CSP-survey, UNIBOOM-system) and vibration coring (40 sediment cores, pneumatic vibration corer, Meischner et al., 1981). Seismic Stratigraphy Four seismic sequences are distinguishable by seismic stratigraphy. All seismic sequences correspond to depositional sequences built up during high sea levels in interglacial times. The seismic sequences are separated by unconformities which are often strongly reflective and correspond to emersion planes during glacial phases. The upper sequence (sequence 4) is related to Holocene sediments. The pre-Holocene bedrock is divided into three different seismic sequences (Kuhn et al., 1981): Sequence 1: oldest Pleistocene sequence (pre-Sangamon sea-level highstands), upper boundary with levelled relief (lower boundary not discernible), composed of strongly cemented carbonate sediments, forms the bedrock below Three Hill Shoals Sequence 2: Sangamon (125 ky sea-level highstand), distinct surface morphology, forms the bedrock of a large area below Holocene sediments, Holocene reefs grew up on elevations of the sequence 2 surface, the Holocene reef rim was developed on an elevated rim of sequence 2 Sequence 3: youngest Pleistocene sequence (Sangamon, 105 and 85 ky sealevel highstands lower than recent), deposited mainly in depressions of the bedrock deeper than -15 m below recent Mean Sea Level, levelling the older relief, peat sedimentation in places The distribution of recent reef areas and lagoonal basins is strongly controlled by pre-Holocene topography and geology of the bedrock. During the Holocene approx. 1050 x 106 m3 of carbonate sediments were deposited in the North Lagoon (290 km2) and approx. 1350 x 106 m3 in the reef rim area (170 km2). Sedimentology There are no larger oscillations of the Holocene sea level identifiable in the sedimentological record. The pre-Holocene topography was gradually drowned during the Holocene sea-level rise. At first, the depositional depressions were separated and landlocked. Fresh water peat marshes, fresh water ponds, marine ponds and bays were formed. With rising sea level, the land barriers were more and more eroded, drowned and lost their influence on the back-barrier sedimentation area. Autochthonous and allochthonous peat, lime gyttja and carbonate mud are a typical transgressive back-barrier sediment sequence. After destruction of the barrier, the depositional milieu changed from restricted marine to normal marine, open lagoonal. Sea-grass sediments and nearly mud-free carbonate sand were deposited in shallow water in an exposed environment. Hydrodynamic energy decreases with increasing water depth in the lagoonal basin. A more densely growing reef rim and intralagoonal reef growth added to the protection of the deeper lagoonal floors. Fine-grained sediments were deposited in this environment. They are distributed over a large area of the North Lagoon and form the top of the transgressive lagoonal sediment sequence. Holocene reefs mainly developed on rises of the pre-Holocene surface. In the early Holocene, solid reef build-ups were able to keep up with the rapid rise of sea level. Sand pockets in the reefs were left behind and filled up mainly in the later Holocene. The percentage of fine-grained sediments, produced and resuspended in the reef rim and deposited in the near lagoonal back-reef zone, increased during the Holocene. Two models of Holocene sedimentation in a depression and on an elevation of the pre-Holocene surface illustrate the dependence of vertical facies gradation on pre-Holocene topography. Trends of the mostly polymodal grain-size distributions of the Holocene sediments are a coarsening-upward in the back-barrier and a fining-upward in the lagoonal sediment sequences. Change in the composition of the molluscan fauna in the Holocene sediments (particle size 〉 2000 µm) is an Indication for fades changes. Gastropods are abundant in the basal backbarrier sediments. Bivalves are rare and their diversity 1s low. Sea-grass sediments contain Codakia orbicularis and Astraea phoebia shells. In the sheltered lagoonal environment shell fragments 〉 2000 µm become rare, common species are Gouldia cerina, Pitar fulminata and Finella sp. (approx. 1000 µm). Fine-grained reef-rim derived sediments differ from lagoonal sediments by a higher percentage of Homotrema rubrum fragments and Alcyonaria spicules.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Thesis , notRev
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  • 11
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    In:  Mededelingen van het Botanisch Museum en Herbarium van de Rijksuniversiteit te Utrecht (2352-5754) vol.176 (1961) nr.1 p.1
    Publication Date: 2015-05-08
    Description: There comes a time in the history of nearly every genus when it becomes almost immoral to add new species without first having surveyed the genus as a whole. Dendrophthora has reached this state. From the time of its first recognition as a separate entity to the present, new species have been described, often on very tenuous grounds, and usually without an indication of infrageneric relationships, until today we are faced with a staggering mass of specific epithets in complete chaos. The genus has not been comprehensively studied for more than half a century, and no balanced attempt has as yet been made to establish natural divisions within. Having become interested in the morphology of this and the related genus Phoradendron (KUIJT, 1959), I was naturally led on to some taxonomic considerations. My stay in Europe in 1958-1959 enabled me to visit the major European herbaria, and the notes and sketches accumulated there soon pointed the way to the present work.
    Repository Name: National Museum of Natural History, Netherlands
    Type: Article / Letter to the editor
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  • 12
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    In:  Mededelingen van het Botanisch Museum en Herbarium van de Rijksuniversiteit te Utrecht (2352-5754) vol.173 (1961) nr.1
    Publication Date: 2015-05-08
    Description: In the years 1954-1957 The Foundation for Biocenological Research (Stichting tot Onderzoek van Levensgemeenschappen, S.O.L.) carried out an extensive study on the vegetation of about 125 former river beds in the Netherlands. They were situated along the great rivers and their branches, viz. Meuse, Oude Maas (“Old Meuse”), Heusdense Maas (“Heusden Meuse”), Rhine, Lek, Merwede, Waal and IJsel. The work was made possible by a grant of the Netherlands Organisation for Pure Research (Nederlandse Organisatie voor Zuiver Wetenschappelijk Onderzoek, Z.W.O.). Dr. M. F. Mözer Bruijns proposed and supervised the investigation, and Dr. V. Westhoff took part in the interpretation of the results. The field work was carried out by A. J. Quené-Boterenbrood (1954-55), W. A. E. van Donselaar-ten Bokkel Huinink (1955-56), J. van Donselaar (1955— 57), Ir. L. G. Kop (1956-57), P. J. Schroevers (1954-55) and E. E. van der Voo (1954-57). Our study had several aims. The collected material had to contribute to our knowledge of a number of plant species and communities, especially of those playing a part in the hydrosere found in various kinds of water. With respect to the communities it should comprise their floristic composition as well as a definition of their habitat. Moreover, the former river beds should be classified according to their plant communities as well as to their abiotical properties. This classification should be useful as a basis for the choice of future naturereserves (see Gorter and Westhoff, 1952; Van Donselaar, 1956; Westhoff and Leentvaar, 1957).
    Repository Name: National Museum of Natural History, Netherlands
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  • 13
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    In:  Correspondentieblad ten dienste van de floristiek en het vegetatie-onderzoek van Nederland vol.18 (1961) nr.1 p.187
    Publication Date: 2015-05-08
    Description: Op 8 okt 1960 vond de heer J.C. Tanis, custos van het Biologisch Station “Schellingerland” op Terschelling, in de nabijheid van dit Station een bloeiend exemplaar van Erica cinerea L. Na opzending van een bloeiende tak via ondergetekenden naar het Rijksherbarium werd deze determinatie bevestigd. Deze opmerkelijke waarneming geeft aanleiding tot commentaar, temeer, daar men op het eerste gezicht geneigd is, hier enig verhand te zien met de ontdekking van twee andere, mediterraan-atlantische, Erica-soorten in dezelfde omgeving, te weten E. scoparia L. door Th.J. Reichgelt in 1952 (zie van Ooststroora en Reichgelt 1956) en E. ciliaris L. door P. Runge in 1955 (zie Runge 1956, van Ooststroom en Reichgelt 1956).
    Repository Name: National Museum of Natural History, Netherlands
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  • 14
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    In:  Flora Malesiana Bulletin (0071-5778) vol.16 (1961) nr.1 p.817
    Publication Date: 2015-04-20
    Description: The following is an author’s summary of the (as yet unpublished) thesis by Dr. J.A.R. Anderson of Kuching, Sarawak (see III. Personal news). Both the author and botanical science are to be congratulated with the completion of this important work, which we hope before long to see in print. The thesis embodies the results of botanical and ecological work on the coastal and deltaic peat swamp forests of Sarawak and Brunei undertaken intermittently over a period of ten years. Profiles of peat swamps have been prepared from the results of the level surveys and peat borings. A characteristic raised bog structure has been found in all swamps. A bog plain is usually present, and is most extensive on more inland swamps. The peat soils are markedly acidic and oligotrophia. Preliminary results from measurements of the stilted water table indicate that variations are more pronounced in the centre of swamps than near the margins. A comprehensive collection of botanical specimens of all flowering plants, ferns and fern allies has been made; 242 tree species have been recorded, and it is considered that knowledge on the representation of the arboreal flora is virtually complete.
    Repository Name: National Museum of Natural History, Netherlands
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  • 15
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    In:  Flora Malesiana Bulletin (0071-5778) vol.16 (1961) nr.1 p.841
    Publication Date: 2015-06-05
    Description: The Natural History of Rennell Island, British Solomon Islands. Scientific Result of the Danish Rennell Expedition, 1951, and the British Museum (Natural History) Expedition, 1959. Vol. 5 (Botany and Geology), ed. by Torben Wolff. Danish Science Press, Copenhagen, 1960, 7-152 pp., many figs and photogr. This volume was issued in 5 instalments. The first (1957) contains a paper by N. Foged: Diatoms from Rennell Island. The second (1958) contains papers by E.B. Bartram: Musci, by T. Wolff: Vascular Plants from Rennell and Bellona Islands (a list of 31 spp. identified by F.R. Fosberg, and a few names of seeds), and by J.C. Grover: The Geology of Rennell and Bellona. The third instalment (1960) contains papers by T. Levring: A List of Marine Algae from Rennell Island, and by Lise Hansen: Some Macromycetes from Rennell and Alcester Islands. For the botanist may also be of interest T. Wolff’s general introduction in vol. 1 of the series (1955) 9-31. Proceedings of the Symposium on Humid Tropics Tjiawi (Indonesia) December 1958. Publication of Unesco Science Cooperation Office for Southeast Asia. Printed at New Delhi, no date; received March 1961; xv + 312 pp., map of Brunei, vegetation maps, photogr. Biographical notes of authors; discussions. Sponsored by the Council for Sciences in Indonesia and Unesco; Chairman Prof. Kusnoto Setyodiwiryo.
    Repository Name: National Museum of Natural History, Netherlands
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  • 16
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    In:  Flora Malesiana Bulletin (0071-5778) vol.37 (1984) nr.9/1 p.60
    Publication Date: 2015-06-05
    Description: ANDERSON, J.A.R., A checklist of the trees of Sarawak, 364 pp. (1983, Dewan Bahasa dan Pustaka Cawangan Sarawak, for Forest Department, Kuching, Sarawak). Cloth Mal$ 15.00. When Dr. Anderson retired from the Forest Department in 1973 he left the manuscript of this checklist for publication. Unfortunately publication was delayed for 10 years. It contains data on over 2500 arboreous plant species. The text consists mainly of two parts: the first is a list of vernacular names with their scientific equivalents, the second is a list of plant names alphabetically arranged by family. Each species is concisely annotated with its vernacular name(s), maximum diameter, ecology, frequency, soils, etc. Species names have been coded: the first two figures are for the family, the next two for the genus and the last two for the species. A list is given of the trees of the peat-swamp forests of which Anderson was a great expert. A small draw-back is that the literature of the last ten years has not been included. Nevertheless this is a most helpful book. — C.G.G.J. van Steenis.
    Repository Name: National Museum of Natural History, Netherlands
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  • 17
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    In:  Flora Malesiana Bulletin (0071-5778) vol.16 (1961) nr.1 p.793
    Publication Date: 2015-06-05
    Description: Alston, A.H.G. J.A. Crabbe, A.H.G. Alston (1902-1958). A bibliography of his writings, with a short introduction and a list of new taxa and nomenclatural changes published by him. J. Soc. Biol. Nat. Hist. 3 (1960) 383-404.
    Repository Name: National Museum of Natural History, Netherlands
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  • 18
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    In:  Flora Malesiana - Series 1, Spermatophyta (0374-7778) vol.10 (1984) nr.1 p.31
    Publication Date: 2015-04-20
    Description: Small evergreen trees, shrubs or lianas; two genera ( Cansjera and Opilia) are known to be root-parasites. Leaves distichous, simple, usually extremely variable in form and size, entire, exstipulate, pinnately veined; dried leaves mostly finely tubercled by cystoliths located in the mesophyll. Inflorescences axillary or cauliflorous, panicle-like, racemose, umbellate (in Africa) or spicate; bracts narrowly ovate or scale-like, in Opilia peltate, often early caducous. Flowers small, (3—) 4—5) (—6)-merous, mainly bisexual, sometimes unisexual and plants then dioecious ( Gjellerupia, Melientha, and Agonandra) or gynodioecious (Champereia). Perianth with valvate, free or sometimes partly united tepals (in ♀ flowers of Gjellerupia wanting). Stamens as many as and opposite to the tepals (in ♀ flowers only small staminodes); anthers introrse, 2-celled, longitudinally dehiscent. Disk intrastaminal, lobed (lobes alternating with the stamens), annular, or cupular. Ovary superior, 1-celled; style short or none, stigma entire or shallowly lobed. Ovule 1, pendulous from the apex of a central placenta, anatropous, unitegmic and tenuinucellar. Fruit drupaceous, pericarp rather thin, mesocarp ± fleshy-juicy, endocarp woody or crustaceous. Seed large, conform to the drupe, without testa; hilum basal, often in a funnel-shaped cavity. Embryo terete, embedded in rich, oily endosperm, nearly as long as the seed or shorter, with 3—4 linear cotyledons, radicle often very short. Distribution. There are 9 genera with about 30 spp., widespread in the tropics. Rhopalopilia is restricted to Africa and Madagascar, Agonandra to South and Central America. In Malesia: 7 genera, 5 of these only known from the eastern Old World (1 endemic: Gjellerupia in New Guinea); Opilia and Urobotrya occur also in tropical Africa.
    Repository Name: National Museum of Natural History, Netherlands
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  • 19
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    In:  Flora Malesiana - Series 1, Spermatophyta (0374-7778) vol.10 (1984) nr.1 p.419
    Publication Date: 2015-04-20
    Description: Monoecious, medium-sized to very large trees (rarely shrubby in very exposed situations). Either four independent cotyledons or two fused pairs (which may be retained in the seed after germination). The growing point of foliage shoots quite distinct between the two genera, being just a few highly reduced leaves in Araucaria and a highly organized bud formed of overlapping scales in Agathis. The leaves vary from scales or needles to broad leathery forms with many parallel veins sometimes on the same plant at different stages of growth. Pollen produced in cylindrical cones from one to as much as twenty cm long with numerous pedunculate spirally placed microsporophylls each with several to many pendent elongated pollen sacs attached to the lower side of an enlarged shieldlike apex which also projects apically more or less overlapping the adjacent microsporophylls. Pollen cones solitary, terminal or lateral, on branches separate from those bearing seed cones, subtended by a cluster of more or less modified leaves in the form of scales, deciduous when mature. Pollen globular, without ‘wings’. Seeds produced in large, well-formed cones which disintegrate when mature, dispensing the seeds in most cases with the help of wing-like structures; the seed cone terminal on a robust shoot or peduncle with more or less modified leaves that change in a brief transition zone at the base of the cone into cone bracts, formed of numerous spirally-placed bract complexes, usually maturing in the second year. Individual seed cone bract leathery or woody and fused with the fertile scale which bears one large inverted seed on its upper surface. Distribution. The 40 species in two genera are well represented in Malesia (13 spp.) and extend eastward and southward into Fiji, New Caledonia (18 spp.), Australia, and New Zealand, with 2 spp. also in the cooler parts of South America, giving the family a distinct Antarctic relationship. Only one species of Araucaria (in South America) occurs completely outside of the tropics, while the majority of the species in the family belong in the lowland tropics and others grow in the tropical highlands.
    Repository Name: National Museum of Natural History, Netherlands
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  • 20
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    In:  Flora Malesiana - Series 1, Spermatophyta (0374-7778) vol.10 (1984) nr.1 p.6
    Publication Date: 2015-04-20
    Description: Many botanists must have wondered why as yet no volume of Flora Malesiana was dedicated to the outstanding botanist Carl Ludwig Blume, undisputed pioneer in planning the compilation of a ‘Flora Malesiana’. The writing of this Dedication would have been greatly facilitated if a full biography of BLUME had been existent, but none is available; there is not even a bibliography of his works. Only recently, in 1979, two biographical attempts were made, by J. MACLEAN and by A. DEN OUDEN, but only for the period 1820-1832; together with other biographical and obituary notes they are here assembled in Appendix B. I have also compiled a bibliography: Appendix A.²
    Repository Name: National Museum of Natural History, Netherlands
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  • 21
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    In:  Flora Malesiana - Series 1, Spermatophyta (0374-7778) vol.10 (1984) nr.1 p.123
    Publication Date: 2015-04-20
    Description: Erect or straggling herbs, shrubs or trees, sometimes monoecious or dioecious, the herbs sometimes rhizomatous; branches sometimes jointed at the nodes, sometimes without vessels ( Sarcandra). Leaves simple, decussate or sometimes whorled in fours, serrate, crenate or dentate, the teeth often thickened at the apex, penninerved, usually petiolate; petioles more or less connected at the base at least by a transverse line or connate into a distinct sheath; in Ascarina often alternating with leafless internodes which have the petiolar sheath; stipules minute to fairly conspicuous, subulate, borne on the petiole bases or sheath, occasionally pectinate. Flowers much reduced, without perianth, fully unisexual or essentially bisexual with the reduced anther-bearing organ adnate to the side of the ovary; arranged in spicate, paniculate, or capitate axillary or terminal inflorescences. — Male flowers bracteate or not, apparently consisting of 1—5 stamens, or in Hedyosmum consisting of numerous anthers in a cone-like structure; if 3 then the whole forming a fused 3-lobed organ sometimes enveloping the female flower by its edges, the central anther with 2 or aborted loculi and the laterals with single loculi, simply lobed or with connectives slightly to considerably produced so that the whole organ is 3-fingered; if with only 2 anther locelli then these on either side of a thickened filament plus connective. — Female flowers naked or enclosed by a cupular bract, the perianth adnate to the ovary, often minutely or shortly dentate at the apex and the ovary thus inferior; ovary 1-locular; stigma sessile or style short; truncate, 2-lipped, depressed or subcapitate (or horseshoe-shaped in one species), rarely linear or clavate. Ovule solitary, orthotropous, pendulous, bitegmic and crassinucellate. Drupes fleshy, small, ovoid or globose, sometimes more or less 3-sided in Hedyosmum, free or united into a mass by the bracts; endocarp hardened and crustaceous. Seeds subglobose, exarillate, with copious fleshy or oily endosperm and minute embryo, the cotyledons divaricate or scarcely formed. Distribution. Four genera with about 80 species. Since VESTER’S (1940) small-scale map the family (Ascarina) has been found in Madagascar. It is mainly tropical but Ascarina extends south to North Island of New Zealand (fig. 6) and Chloranthus and Sarcandra extend north to Japan, China, Korea and the eastern U.S.S.R. (Ussuri).
    Repository Name: National Museum of Natural History, Netherlands
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  • 22
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    In:  Flora Malesiana - Series 1, Spermatophyta (0374-7778) vol.10 (1984) nr.1 p.635
    Publication Date: 2015-04-20
    Description: Trees or shrubs (or rarely suffrutices outside Malesia). Leaves simple, alternate, often coriaceous, glabrous or with an indumentum on undersurface, margin entire; petioles often with 2 lateral glands. Stipules 2, minute and caducous to large and persistent, usually linear-lanceolate. Inflorescence racemose, paniculate or cymose; flowers bracteate and usually bibracteolate; bracts and bracteoles small and caducous or larger and enclosing flower or groups of flowers and persistent. Flowers actinomorphic to zygomorphic, hermaphrodite or rarely polygamous, markedly perigynous. Receptacle campanulate to cylindrical or rarely flattened cupuliforum, often gibbous at base; calyx lobes 5, imbricate, often unequal, erect or reflexed. Petals 5 (absent in some Neotropical species), inserted on margin of disk, commonly unequal, imbricate, deciduous, rarely clawed. Stamens indefinite, 2—60 (to 300 in Neotropics), inserted on margin of the disk, in a complete circle or unilateral, all fertile or some without anthers and often reduced to small tooth-like staminodes; filaments filiform, free or ligulately connate, short and included to long and far exserted; anthers small, 2-locular, longitudinally dehiscent, glabrous or rarely pubescent. Ovary basically of three carpels but usually with only one developed, the other two aborted or vestigial, variously attached to (the base, middle or mouth of) receptacle, usually sessile or with short gynophore, pubescent or villous; ovary unilocular with two ovules or bilocular with one ovule in each locule. Ovules erect, with micropyle at base (epitropous). Style filiform, basally attached; stigma 3-lobed or truncate. Fruit a fleshy or dry drupe of varied size, interior often densely hairy; endocarp much varied, thick or thin, fibrous or bony, often with a special mechanism for seedling escape. Seed erect, exalbuminous, the testa membraneous; cotyledons amygdaloid, plano-convex, fleshy, sometimes ruminate. Germination hypogeal with the first leaves opposite or alternate or epigeal with opposite first leaves. An extensive review of the generic limits of the family has been published: G.T. PRANCE & F. WHITE, The genera of Chrysobalanaceae: a study in practical and theoretical taxonomy and its relevance to evolutionary biology, Phil. Trans. Roy. Soc. London 320 (1988) 1—184. This contains full details of taxonomic history, morphology, anatomy, pollen, ecology and distribution of the family. A condensed version of these subjects is given here. Details of the Neotropical members of the family are given in: G.T. PRANCE, Chrysobalanaceae, Flora Neotropica 9 (1972) 1—410. The African members of the family were treated in: F. WHITE, The taxonomy, ecology and chorology of African Chrysobalanaceae (excluding Acioa), Bull. Jard. Bot. Nat. Belg. 46 (1976) 265—350.
    Repository Name: National Museum of Natural History, Netherlands
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  • 23
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    In:  Flora Malesiana - Series 1, Spermatophyta (0374-7778) vol.10 (1984) nr.1 p.53
    Publication Date: 2015-04-20
    Description: Perennial herbs, more commonly woody at the base, undershrubs or shrubs, erect, scrambling or scandent, sometimes high lianas. Rhizome not rarely tuberous. Branches often slightly swollen and jointed at nodes. Hairs simple, uni- or multicellular, short ones often with a hooked apex. Leaves simple, spiral or alternate, petioled (without an abscission zone), exstipulate; midrib usually prominent beneath, elevated or flat above; nervation commonly palmate, or pinnate, nerves often obliquely extending towards the margin. Flowers bisexual, actinomorphic or zygomorphic, solitary, fasciculate, or in axillary or cauligerous, racemose, paniculate or cymose inflorescences, usually only one or two flowers open at a time; bracts present and often persistent; pedicel often hardly distinct from the ovary. Calyx petaloid, gamosepalous, 3- (or 6-) lobed or 1-lipped; lobes valvate or induplicate. Petals (in Mal.) absent. Disk (?) 0, rarely present (e.g. a few Thottea spp.). Stamens 6 (4 or 5 in some extra-Mal. Aristolochia spp.) or 6—c. 36 (—46), in 1 whorl or in 2 (3 or 4) whorls (Thottea); filaments free or slightly mutually united at the base, and/or almost completely adnate to the style column to form a gynostemium; anthers free (Thottea) or dorsally united with the style column (Aristolochia), each consisting of 2 thecae with 4 pollen sacs, extrorse, rarely introrse (extra-Mal. spp.), dehiscing longitudinally. Ovary inferior (rarely half-inferior in extra-Mal. genera), 4—6-carpellate, 4—6-celled, syncarpous (or ± apocarpous in extra-Mal. Saruma); placentae parietal (distinct when young, then intruding and connivent axially, thus often seemingly axile); ovules usually many, anatropous, in 1 or 2 vertical rows in each locule of the ovary, horizontal or pendulous; style-column 3—many-lobed, sometimes some of the lobes redivided; stigmas or stigmatic tissue apical, lateral, or on the surface of style lobes. Fruits capsular or siliquiform (follicular or cocci in extra- Mal. genera), 4—6-celled; dehiscing apically towards the base (basipetal, e.g. Thottea) or basally towards the apex (acropetal, e.g. most Aristolochia); septicidal, rarely septifragal (some extra-Mai. Aristolochia) or bursting irregularly (extra-Mal. Asarum); rarely indehiscent (W. African Pararistolochia). Seeds many in each locule (1-seeded in extra-Mal. Euglypha), often coated with remains of placental tissue (membranous when dry), horizontal or pendulous, variously shaped; ovate, deltoid or triangular, flat, convex-concave, or longitudinally curved, or oblong (and triangular in cross-section), rugose, finely verrucose, or smooth, immarginate (Thottea; Aristolochia, p.p.) or winged (Aristolochia, p.p.); albumen fleshy, copious; embryo minute, cotyledons two, distinct. Distribution. There are 7 genera, Aristolochia worldwide, Asarum over the northern hemisphere, Thottea in continental Southeast Asia and Malesia, Pararistolochia in tropical Africa, and 3 monotypic genera, viz. Saruma in China, Holostylis and Euglypha in South America. As to number of species, Aristolochia is by far the largest with some 300 spp., largely concentrated in the New World, especially in Central and South America, in Malesia with 28 spp.; Asarum (incl Hexastylis and Heterotropa) with possibly some 70 spp. in northern temperate regions, Thottea with 26 spp., of which 22 in Malesia, and Pararistolochia with 12 spp. in West Africa.
    Repository Name: National Museum of Natural History, Netherlands
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  • 24
    facet.materialart.
    Unknown
    In:  Persoonia - Molecular Phylogeny and Evolution of Fungi (0031-5850) vol.2 (1961) nr.1 p.91
    Publication Date: 2015-04-20
    Description: Description de Psilocybe callosa (Fr. per Fr.) Quél., espèce oubliée et mal connue, et de deux espèces nouvelles.
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  • 25
    facet.materialart.
    Unknown
    In:  Persoonia - Molecular Phylogeny and Evolution of Fungi (0031-5850) vol.12 (1984) nr.3 p.317
    Publication Date: 2015-04-20
    Description: Type material of Tulasnella cystidiophora Höhn. & Litsch. has been studied. The species is characterized by often moniliform gloeocystidia and clamp-less hyphae (at least in the subhymenium).
    Repository Name: National Museum of Natural History, Netherlands
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  • 26
    facet.materialart.
    Unknown
    In:  Persoonia - Molecular Phylogeny and Evolution of Fungi (0031-5850) vol.1 (1961) nr.4 p.409
    Publication Date: 2015-04-20
    Description: Mycoleptodonoides Nikol. is compared with other genera, Hydnum aitchisonii Berk, is redescribed, and for it the new combination Mycoleptodonoides aitchisonii (Berk.) Maas G. is proposed.
    Repository Name: National Museum of Natural History, Netherlands
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  • 27
    facet.materialart.
    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.29 (1984) nr.2 p.513
    Publication Date: 2015-03-06
    Description: A new species, Alstonia undulifolia Kochummen & Wong, is described from the Malay Peninsula. Two sections of the genus occur in the Malay Peninsula, Alstonia sect. Monuraspermum Mon. and Alstonia sect. Alstonia, the latter being the correct name for what was previously known as sect. Pala (Adr. Juss.) Benth. Various characteristics, including growth architecture, are examined for their usefulness in distinguishing these two sections of the genus. In comparing A. angustiloba Miq. and A. pneumatophora Berger, both of which have not been properly differentiated by characteristics of the reproductive organs, A. pneumatophora var. petiolata Mon. is reduced to synonymy under A. angustiloba. A key to the seven species of Alstonia native to the Malay Peninsula is provided.
    Repository Name: National Museum of Natural History, Netherlands
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  • 28
    facet.materialart.
    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.11 (1961) nr.1 p.226
    Publication Date: 2015-03-06
    Description: Spiranthes sinensis (Pers.) Ames, also known under the synonym S. australis (R. Br.) Lindl., is a terrestrial orchid widely spread in Asia, which is rather well known in Western Europe, because it has repeatedly been found growing spontaneously in pots in orchidhouses. In Blumea 6(2): 361 (1950) the plant described as Ophrys lancea Thunb. ex Sw. was considered to be identical with the first and it was thought that the recombination Spiranthes lancea (Thunb. ex Sw.) B. B. S. was necessary. The reasons given for this transfer were: (1) the short diagnosis of Ophrys lancea given by Winberg in Florula Javanica, p. 8 (1825); (2) the original diagnosis of O. lancea in Swartz’s well-known dissertation on the classification of orchids in Kongl. Vet. Akad. Handl. Stockh. 21: 223 (1800); (3) the presence of the apparent holotype in the Thunberg herbarium (Uppsala).
    Repository Name: National Museum of Natural History, Netherlands
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  • 29
    facet.materialart.
    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.29 (1984) nr.2 p.481
    Publication Date: 2015-03-06
    Description: Revision of the Malesian species of the genus Steganthera, which centres in New Guinea; precursor to treatment in Flora Malesiana. There are 16 species accepted; 5 are described as new, 12 names are reduced, 3 are excluded and 9 are imperfectly known.
    Repository Name: National Museum of Natural History, Netherlands
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  • 30
    facet.materialart.
    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.29 (1984) nr.2 p.399
    Publication Date: 2015-03-06
    Description: In a recent thesis B.S. Fey (Zürich) has developed a new theory about the origin of the cupule in Fagaceae. He has concluded that the appendages (spines, lamellae, etc.) on the outside of the cupule are regularly arranged and that they reflect a condensation (concrescence) of a dichasial flower system, so that cupule and fruit(s) form together the representation of one ancestral inflorescence; the cupular appendages would then largely represent the bracts of the ancestral inflorescence. This stands in contrast with former opinions, in which the cupule was interpreted as of separate vegetative origin from the nut(s) which was (were) the remain (s) of the inflorescence.
    Repository Name: National Museum of Natural History, Netherlands
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  • 31
    facet.materialart.
    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.11 (1961) nr.1 p.132
    Publication Date: 2015-03-06
    Description: Mr F. H. Hildebrand, who is going gradually through the tree species from New Guinea, pointed my attention to this species, the type of which is in the Rijksherbarium at Leyden (in fruiting state). It was collected by Zippelius who rightly recognized its alliance; he added a MS description and gave it the MS name Epicharis lasiocarpa. Miquel subsequently described it in the genus Dysoxylum, but the curved fern-like leaftip and other characters leave no doubt about its belonging to Chisocheton. There are at Leyden two further collections of it from New Guinea, both made by Teysmann, HB 6058 and 6060.
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  • 32
    facet.materialart.
    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.29 (1984) nr.2 p.523
    Publication Date: 2015-03-06
    Description: Recent studies in Sabah and Sarawak have demonstrated the presence of an undescribed species of Podocarpus.
    Repository Name: National Museum of Natural History, Netherlands
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  • 33
    facet.materialart.
    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.11 (1961) nr.1 p.1
    Publication Date: 2015-03-06
    Description: G. abbreviata J.J.S. in Fedde, Rep. 35, 1934, 292; Sleum., Reinwardtia 4, 1957, 172. SUMATRA. Tapanuli, Tele, S. of Sidikalang, Alston 14878. Westcoast, G. Singgalang, 1900 m, Meijer 5919.
    Repository Name: National Museum of Natural History, Netherlands
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  • 34
    facet.materialart.
    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.30 (1984) nr.1 p.197
    Publication Date: 2015-03-06
    Description: Pholidota kinabaluensis is transferred to the new monotypic genus Entomophobia. Coelogyne phaiostele, C. ridleyana, and Pholidota triloba are identical and transferred to the new genus Geesinkorchis, that also comprises the new species G. alaticallosa. The monotypic genus Sigmatochilus is reduced to Chelonistele, in which C. dentifera and C. lurida var. grandiflora are described as new. Chelonistele crassifolia is regarded as a variety of C. sulphurea.
    Repository Name: National Museum of Natural History, Netherlands
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  • 35
    facet.materialart.
    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.30 (1984) nr.1 p.169
    Publication Date: 2015-03-06
    Description: The genera Hunteria and Lepiniopsis of the family Apocynaceae are in Malesia represented by one species each. Distribution and ecology are cited in full.
    Repository Name: National Museum of Natural History, Netherlands
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  • 36
    facet.materialart.
    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.11 (1961) nr.1 p.229
    Publication Date: 2015-03-06
    Description: The publication of the supplement 1 of the well known and essential reference work of “A Bibliography of Eastern Asiatic Botany” is very welcome. It is a continuation of the original work, which closed with 1936, and extends through 1958. It covers the botanical literature on eastern Asia, as indicated by the title, which comprises China, Japan, Korea, Ryukyu, Mongolia and Soviet eastern Asia, as well as the major published papers appertaining to adjacent areas. It has been prepared on essentially the same pattern as the original volume while the subject index has been treated perhaps in a more thorough manner. The volume contains over 11,000 extensively and carefully annotated entries occupying 414 pages. The work is in English but the titles, papers and author names in oriental characters are fully cited, which is an improvement as compared with the original volume. It includes now the original Chinese, Japanese and Korean titles and author names as published in oriental characters as well as translations or transliterations of them. In addition, the supplement fortunately covers the extensive Russian literature, nearly 1600 entries, on Soviet eastern Asia. All Russian titles are transliterated into Roman letters and are also translated. All these improvements make this bibliography more complete than the original volume and extend its usefulness.
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  • 37
    facet.materialart.
    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.11 (1961) nr.1 p.9
    Publication Date: 2015-03-06
    Description: Within the genus Vaccinium L. this revision of its Malaysian species — which comprises more than half of the total number of species of the genus — is the last in a series of modern treatments made for North America by W. H. Camp, for the Pacific area by C. Skottsberg, and for tropical America and tropical Asia by the present author. The work formerly done in Malaysian Vaccinium has been limited to islands, as that by J. J. Smith and Schlechter for a part of New Guinea, by Copeland f. for the Philippines, and by Amshoff for Java, with the shortcomings necessarily connected with such too local work. The sections proposed for the Malaysian species in my general system in 1941 have been found still useful and are kept here except a nomenclatural change in one section and the expansion in species due to the large amount of indetermined material collected in Celebes and especially in New Guinea.
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  • 38
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    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.30 (1984) nr.1 p.209
    Publication Date: 2015-03-06
    Description: Five new species of Rafflesia (Rafflesiaceae) are described, while attention is drawn to a sixth, possibly also new one. A key to all recognized species is given.
    Repository Name: National Museum of Natural History, Netherlands
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  • 39
    facet.materialart.
    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.29 (1984) nr.2 p.499
    Publication Date: 2015-03-06
    Description: The morphology and leaf anatomy of Myxopyrum is described and a key to the species is given. Of the 15 species previously described four species and two subspecies are recognised: M. nervosum Bl. (synonyms M. horsfieldii, M. zippelii) with one subspecies coriaceum (Bl.) Kiew (synonym M. ellipticum), M. ovatum Hill (synonyms M. macrolobum, M. cordatum, M. philippinensis), M. pierrei Gagnep. (synonym M. hainanense) and M. smilacifolium Bl. (synonym M. serrulatum) with one subspecies confertum (Kerr) Kiew. Myxopyrum enerve Steen. is Chionanthus enerve (Steen.) Kiew. Descriptions for the extra-Malesian species, M. smilacifolium, is given.
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  • 40
    facet.materialart.
    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.29 (1984) nr.2 p.319
    Publication Date: 2015-03-06
    Description: In subgenus Malachobatus twenty Malesian species are recognized, one of them ( Rubus moluccanus L.) with four varieties. Synonymy, descriptions, habitat notes, etc. are given. New names: R. moluccanus L. var. discolor (Bl.) Kalkm. and var. angulosus Kalkm. A key is given to the Malesian species.
    Repository Name: National Museum of Natural History, Netherlands
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  • 41
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    Unknown
    In:  Blumea - Biodiversity, Evolution and Biogeography of Plants (0006-5196) vol.30 (1984) nr.1 p.89
    Publication Date: 2015-03-06
    Description: In Southeast Asia (excluding India) 44 taxa are recognized, 39 species, of which four are newly described ( I. kerrii, I. luzoniensis, I. emmae, and one unnamed species A, which will be treated by Nguyen Van Thuan, Paris), four subspecies, one of which is new (I. sootepensis subsp. acutifolia) and three are new combinations ( (I. suffruticosa subsp. guatemalensis, I. trifoliata subsp. unifoliata, I. trita subsp. scabra) ), and one variety which is a new combination I. spicata var. siamensis). A key, descriptions and full synonymy are given as well as 4 distribution maps and 5 figures.
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  • 42
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    Unknown
    In:  Leidse Geologische Mededelingen (0075-8639) vol.26 (1961) nr.1 p.59
    Publication Date: 2014-10-27
    Description: 1. Im Vorderen Filzmoos am Warscheneck, an einer Stelle ca. 100 m nördlich vom Linzerhaus auf einer Höhe von ca. 1400 m wurde eine Probenserie gesammelt. Die Mächtigkeit der durchbohrten Ablagerungen war 590 cm und die folgenden Schichten wurden gefunden: 0—225 cm Sphagnumtorf 225—285 cm Hypnazeentorf 285—460 cm Kalkgyttja 460—590 cm grauer Ton. Die Filzmoose am Warscheneck wurden von Garns (1947, p. 252) als Karstfilze klassifiziert. Letztere sind eine besondere Art von erodierten Latschenhochmooren, welche auf grösseren Höhen in den Nördlichen Kalkalpen und im Ketten-Jura vorkommen.
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  • 43
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    In:  Studies on the Fauna of Curaçao and other Caribbean Islands (0166-5189) vol.12 (1961) nr.1 p.1
    Publication Date: 2014-10-27
    Description: The alcyonarian fauna of the West Indies is prolific and conspicuous and has been known for many years, with the natural result that a great many more species have been described than actually exist. The deep-water fauna, which received little attention prior to the work of VERRILL, was thoroughly reviewed by DEICHMANN in 1936. The shallow-water and reef fauna was the subject of a series of extensive papers by KUKENTHAL and his collaborators, KUNZE, MOSER, RIESS, BIELSCHOWSKY, and TOEPLITZ, but this ambitious study appears to have been based upon inadequate collections and its usefulness is seriously limited by the number of synonyms and misidentifications that it contains. No comprehensive survey of the fauna exists, and there is no satisfactory guide for the identification of specimens. This paper, which was prepared at the request of Dr. P. WAGENAAR HUMMELINCK, Secretary of the Stichting ‘Natuurwetenschappelijke Studiekring voor Suriname en de Nederlandse Antillen’ (Foundation for Scientific Research in Surinam and the Netherlands Antilles), forms such a guide and at the same time reviews the fauna to the extent permitted by the collections in hand and the literature. With Dr. HUMMELINCK’S collection of West Indian octocorals serving as a nucleus, the pertinent material in the collections of the U.S. National Museum was critically revised and correlated with the literature in order to gain an accurate picture of the known fauna. As a result of this study, it was possible to recognize 75 species of alcyonarians belonging to the orders Telestacea, Alcyonacea, Gorgonacea, and Pennatulacea inhabiting the reefs and shallow waters of the warm western Atlantic. An additional 21 species from deeper water are also included for comparative purposes or because they inhabit the transitional zone just below the region of active reef growth. Seventeen species and a few growth forms are described as new to science. Each species is diagnosed and illustrated with drawings of the details of spiculation and, in the case of new or especially common species, photographs of the colonial form. Taxonomic keys with couplets illustrated for clarity are provided to facilitate the identification of specimens. The species described in this paper are arranged as indicated in the Table of Contents (p. 3—7). A total of 96 species are described from the region including the Bermudas, the southeastern coast of the United States, the Bahamas and Antilles, and the east coast of South America south to the reefs of Brazil. Of these, 52 species occur in the reef habitat proper or closely associated with it, and another 23 species occur in depths of 25 fathoms or less. The orders Telestacea, Alcyonacea, and Pennatulacea are togehter represented by only 13 species within the bathymetric limits set forth, the remaining 83 belonging to the order Gorgonacea. The littoral and reef-dwelling representatives of the last-named order belong for the most part to the two families Plexauridae and Gorgoniidae, which include 35 and 34 species respectively. When the shallow-water alcyonarian fauna is added to the deep-water fauna as reported by DEICHMANN, a total of 196 species is revealed for the area. This is a fauna of only modest proportions when compared with that of the East Indies, where some 445 species (exclusive of Pennatulacea) were obtained by the ‘Siboga’ Expedition, but nevertheless, the gorgonians are the dominant sessile animals on many of the reefs of Florida, the Bahamas, and the Antilles. This dense population consists chiefly of about a dozen species, all the others being rare or of local occurrence, so it appears that the reef fauna is rich in individuals but poor in species. The distribution of alcyonarians is influenced by a variety of factors, among them salinity, temperature, illumination, depth of water, and character of the bottom. It is not possible to single out any one factor as the most important, since they all interact closely, but there is no doubt that temperature is one of the most influential. Although temperature requirements and tolerations have not been determined experimentally for alcyonarians, they can reasonably be assumed to parallel more or less closely those of the principal reef-formers. It has been observed that formation of reefs does not take place in waters that drop below 68°F. for any appreciable period during the winter. Since active growth of reefs occurs at Bermuda, the northernmost limit of the West Indian fauna, its annual minimum temperature of 66°F, may be taken as the limit for reef formation in the West Indian area. Tropical alcyonarians occur up to this minimum isotherm of both coasts of Florida. Most alcyonarians are stenohaline and require salinities within the range found in the open sea. However, the occurrence of a few species, such as Leptogorgia setacea of the southeastern coast of the United States, in the brackish inshore waters of bays and river mouths indicates that a limited degree of euryhalinity does occur in the Octocorallia. A rough and solid bottom is apparently as necessary for the attachment of gorgonian planulae as it is for those of madrepores, and the importance of this requirement is clearly demonstrated on the west coast of Florida, where reef communities gain a foothold only on the scattered solid outcrops on an otherwise broad, sandy shelf. A few species of Gorgonacea are known to live unattached, the colonies apparently doing so in some cases because no suitable objects were available for attachment, in others because they were broken loose from their original solid support but continued to live in a prone position. Certain deep-water gorgonacean groups (families Chrysogorgiidae and Isididae) that inhabit areas with a scarcity of solid material are able to adapt the form of their holdfast to the conditions present at the time of metamorphosis, producing either a calcareous basal disk for attachment to shells and stones, or a branched, rootlike process for anchoring the colony firmly in a muddy bottom. The pennatulaceans, which are adapted for life on soft bottoms, require either sand or mud and therefore are not found closely associated with reef communities. The octocorals of the reefs are restricted bathymetrically to the upper 25 fathoms of water, perhaps because of their symbiotic zooxanthellae, which require sunlight for the process of photosynthesis, but the physiological relationships of zooxanthellae and their coelenterate hosts are in general less clearly understood in the octocorals than in the madrepores, so the cause of the bathymetricphotic correlation cannot be stated in general terms. Obviously, the vertical distribution of those octocorals that are dependent upon their zooxanthellae for nutrition is governed by the physiological requirements of the algae. In those octocorals that are nutritionally independent of their zooxanthellae (as appears to be generally the case among scleractinian corals) other ecological factors must limit bathymetric distribution. In the West Indies, almost all of the shallow-water octocorals, which represent 38% of the total known fauna, belong to the two families Plexauridae and Gorgoniidae. Very few members of these families extend downward below 25 fathoms, and very few members of the deep-water families venture into water shallower than this. In the East Indies, where a rich tropical alcyonarian fauna exists, 59% of the species taken by the ‘Siboga’-Expedition lived in depths shallower than 50 meters, but this fauna is inordinately rich in groups poorly represented in the West Indies, where 85% of the species are gorgonaceans. In both regions, somewhat more than 40% of the gorgonaceans occur in depths less than 50 meters. The alcyonarians are an important component of the reef community, perhaps more so in the West Indies than elsewhere in the tropics because of the great profusion of a few conspicuous forms in the reef habitat. They provide shelter and sustenance for a wide array of casual associates, epizoa, commensals, and parasites, ranging from other coelenterates to fishes. Moreover, when they die they liberate great quantities of calcareous spicules which are then available for incorporation into the general mass of the reef. The alcyonarian fauna of the warm parts of the western Atlantic shows a high degree of endemism and only indistinct subdivision into smaller faunal regions. It is possible to distinguish a Carolinian fauna occupying the southeastern coast of the United States, with part of its species occurring only along the Atlantic coast and part of them with isolated populations in the northern Gulf of Mexico. At least three species follow the continental coast more or less continuously from the Carolinas to Brazil. This is basically a continental fauna and its species do not range out into the West Indian islands. The fauna of the West Indies is essentially an insular fauna and it suffers depletion wherever it invades continental coasts. The largest number of reef dwelling species seems to occur in the northern islands of the Lesser Antilles, the Greater Antilles, and the Florida Keys. At the present time, more species are known from the last-named locality than from the islands of the Greater Antilles, but it has certainly been more thoroughly explored. Intensive collecting will probably reveal an even larger number of species in the northeastern part of the Antilles. Antillean species extend along both coasts of Florida northward to about the 66°F. minimum surface isotherm, but their number is sharply diminished. A small group of the hardiest species reaches Bermuda, which is the northernmost outpost of the West Indian fauna. Records indicate that the Antillean fauna becomes attenuated also toward the southern islands of the Lesser Antilles, and the Leeward Group along the coast of South America has a fauna comparable in many respects with that of Bermuda. However, the fauna of Bermuda is restricted by the low temperature of the water during midwinter (66°F), a limiting factor that does not exist at the low latitude of the Leeward Islands. The fauna must instead be restricted by other ecological factors, perhaps imposed by the proximity of the continental coast. The alcyonarian fauna of the reefs of Brazil, although composed largely of West Indian genera — Plexaurella, Muriceopsis, Lophogorgia — shares few species, perhaps no more than three or four, with the Antillean region to the north, and is probably the most distinct of the subregions of the western Atlantic. Within the broad limits of the warm western Atlantic fauna 1 region, extending from Bermuda south to Brazil, we can distinguish an insular Antillean fauna centered in the northeastern part of the Antilles; a continental Carolinian fauna along the southeastern Atlantic seabord, some of its species with disjunct populations in the Gulf of Mexico and some following virtually the entire coastline from the Carolinas to Brazil; and a Brazilian fauna extending northward along the South American coast as far as Trinidad. The presence in the West Indies of Alcyonarian genera known also in the tropical Indo-West Pacific can be explained only on the basis of former faunal continuity. The presence of a small amphi-American element clearly points to the existence of a continuous East Pacific-West Atlantic (or trans-American) fauna during the past, and the high level of endemism in the West Indian region suggests a subsequent rapid development of a new fauna from remnants of the old, left behind after closure of the Central American seaways. The distribution of modern alcyonarians corroborates the former existence of a great equatorial sea, the Tethys, that permitted circumtropical distribution of marine animals, which geology tells us existed during much of Earth’s history between the Cambrian and the Tertiary.
    Repository Name: National Museum of Natural History, Netherlands
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  • 44
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    In:  Leidse Geologische Mededelingen (0075-8639) vol.26 (1961) nr.1 p.115
    Publication Date: 2014-10-27
    Description: In the Ordovician sandstones of the Cantabrian Mountains a replacement of the micas by carbonate minerals could be observed. The absence of metamorphic minerals suggests a diagenetic replacement. This is supported by the finding of the same type of replacement in some undisturbed Pliocene sediments of an intramontane basin in the French Pyrenees. It seems that replacement can occur at any stage during diagenesis.
    Repository Name: National Museum of Natural History, Netherlands
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  • 45
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    In:  Bijdragen tot de Dierkunde (0067-8546) vol.54 (1984) nr.2 p.185
    Publication Date: 2014-11-07
    Description: Five halacarid species, found in the mesopsammal of Caribbean Islands, are described, viz. Halacarellus tropicalis n. sp., Copidognathus grandiosus n. sp., Agaue arubaensis n. sp., Scaptognathus ornatus n. sp., and Limnohalacarus cultellatus Viets, 1940. H. tropicalis is the first member of the genus Halacarellus reported from tropical beaches.
    Repository Name: National Museum of Natural History, Netherlands
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  • 46
    Publication Date: 2014-11-07
    Description: Seven springs in the Middle Atlas and five in the Rif have been studied. These show a great diversity of crenal habitats: water temperature ranges from 8.7° to 21°C, and the flow from 1 l/s to 1,800 l/s. Based on hydrologic and thermic characteristics, a spring typology is provided. The invertebrate community consists of 60 species, among which 4, found in the Rif, are new to science: Protonemura sp. (Plecoptera), Obuchovia sp. (Diptera, Simuliidae), Rhyacophila fonticola n. sp., and Philopotamus ketama n. sp. (Trichoptera). The new Trichoptera are both described. Two rare endemic species (the planarian Acromyadenium maroccanum and the coleopteran Elmis atlantis) have been found in a cold-water spring in the Middle Atlas; two black-fly species ( Cnetha carthusiensis and Simulium lamachei), new to North Africa, have been collected in a cold-water spring in the Rif. The cold-water spring community shows a high rate of endemism. Seven endemic cold-stenothermous species constitute a most characteristic crenon fauna in northern Morocco. The fauna of warmer springs (18° ≤ temp. ≤ 21°C) contains potamophilous and thermophilous species, a few of them belonging to the Ethiopian fauna. A comparative study of spring and rhithric communities of Morocco shows that, in the Middle Atlas and the Rif, cold-water springs became refugia for cold-stenothermous, west-palaearctic species; in the past, these species occupied a larger territory which has been reduced after recent climatic and hydrologic changes.
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  • 47
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    In:  EPIC3Dtsch Schiffahrt, 1, pp. 5-7
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  • 48
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    In:  EPIC3Earth and Planetary Science Letters, 71, pp. 111-119
    Publication Date: 2019-07-17
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  • 49
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    In:  EPIC3Reports on Polar Research, Alfred Wegener Institute for Polar and Marine Research, Bremerhaven, 16, 53 p.
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    Publication Date: 2019-07-17
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    Publication Date: 2019-07-17
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  • 52
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    In:  EPIC3Proceedings of the 9th international symposium on Raman spectroscopy and biological sciences.
    Publication Date: 2019-07-17
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  • 53
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    In:  EPIC3Journal of Experimental Marine Biology and Ecology, 77, pp. 169-181
    Publication Date: 2019-07-17
    Description: Rates of food uptake were measured for individually reared larvae of the spider crab Hyas araneus L. feeding on freshly hatched Artemia nauplii at constant 12 degree C. Feeding rates (FR) of crab larvae were given as number of nauplii and amounts of dry weight, carbon, nitrogen, hydrogen, and energy (estimated from C) consumed per day. In both zoeal stages FR increased during postmoult and intermoult, remained high during early and intermediate premoult, and decreased again during late premoult. No clear pattern was found in the course of daily FR of the megalopa. Gross growth efficiencies (K sub(1)) showed a dramatic decrease from postmoult to early premoult (〉 60 to 〈 20%) in both zoeal stages. Daily consumption expressed as % body weight also decreased significantly in these instars. Average daily FR were highest in the zoea II, lowest in the megalopa, and intermediate in the zoea I. Since development of the megalopa took the longest time, the total amount of food consumed by this instar was equal to consumption in both zoeal stages combined.
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  • 54
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    In:  EPIC3Marine Ecology Progress Series, 19, pp. 115-123
    Publication Date: 2019-07-17
    Description: Duration of development in the larval and early juvenile stages H. coarctatus was studied in relation to temperature, and compared at extreme (18 and 6 °C) than at intermediate (9 to 15 °C) temperatures. The results were used to estimate the duration of development from hatching to the third crab stage in the field. Settling and metamorphosis was predicted to occur mainly during June. Biomass increased exponentially during larval development. Juvenile growth was also exponential and was maximum at 9 degree C, and minimum at 18 and 6 °C.
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  • 55
    Publication Date: 2019-07-17
    Description: Statistically significant differences were found in development duration of Hyas araneus L. larvae hatching on different days from the same egg batch. Larvae from different females show a decreasing trend in development time the later they hatch during the season. This trend was found in all larval instars; it was particularly apparent in the megalopa. Development durations in the 2 zoeal stages are positively correlated with each other, i.e. individuals developing slower than the average in the first larval instar tend to delay moulting also in the second instar. There are negative correlations between larval development time in all stages and the size of juvenile crabs, i.e. weak individuals tend to develop more slowly and to become smaller juveniles than the average. These larvae show lower accumulation rates of biomass already during the first zoeal stage. Larval development rates (at 12 °C) were not clearly affected by the temperature prevailing during previous embryonic development, but embryos incubated at higher temperatures tended to become smaller crabs.
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  • 56
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    In:  EPIC3Proceedings of the 9th International Cloud Physics Conference, Tallinn (USSR)August 1984, 21, pp. 241-244
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  • 57
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    In:  EPIC3Berichte des Instituts für Meteorologie und Geophysik der Universität Frankfurt a.M., 56, 234 p.
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  • 58
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    In:  EPIC3Antarctic Challenge: conflicting interests, cooperation, environmental protection, economic development Proc of an Interdisciplinary Symp , Kiel, 1983 (R Wolfrum, ed ) Duncker & Humblot, Berlin, pp. 133-142
    Publication Date: 2019-07-17
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    Publication Date: 2019-07-17
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  • 60
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    In:  EPIC3Comparative biochemistry and physiology a-molecular and integrative physiologyA, 77, pp. 361-368
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  • 61
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    In:  EPIC3MIZEX Bull, 5, pp. 162-163
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    Publication Date: 2019-07-17
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  • 63
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    In:  EPIC3Drosera, 84(2), pp. 83-90
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  • 64
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    In:  EPIC3Jahrbuch d Wittheit zu Bremen, 28, pp. 55-69
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  • 65
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    In:  EPIC3Erzmetall, 37, pp. 577-584
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  • 66
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    In:  EPIC3Reports on Polar Research, Alfred Wegener Institute for Polar and Marine Research, Bremerhaven, 19, 185 p.
    Publication Date: 2019-07-17
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  • 67
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    In:  EPIC3Shock waves in condensed matter (J R Asay, R A Graham, G K Straub, eds ) Elsevier Science Publ , Amsterdam, pp. 501-504
    Publication Date: 2019-07-17
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  • 68
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    In:  EPIC3MIZEX Bull, 5, pp. 90-91
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  • 69
    Publication Date: 2019-07-17
    Description: Exuvial losses in relation to late premoult matter and energy, and in relation to growth achieved during each instar, were studied in laboratory-reared larvae and early juveniles of the decapod H. araneus (L.). Changes of composition during development were measured in the complete body and in the exuvia from hatching through the second crab stage. Rates of exuvial loss increased during development in all parameters measured. They were generally highest in inorganic carbon and lowest in N. six to 7% of late premolte energy was lost by moulting zoeae, i.e. 9 to 13% of the energy produced during these stages. The megalopa lost 13%, and juveniles 19 to 20% of their LPRM energy ( similar to 29 to 41% of growth). During complete larval development of H. araneus a total of 18% of produced energy was lost at ecdysis. The same amount had been reported in the literature for larval development of 3 other decapod species.
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  • 70
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    In:  EPIC3Helgoländer Meeresuntersuchungen, 38, pp. 21-33
    Publication Date: 2019-07-17
    Description: The influence of continuous and differential transitory starvation on the moult cycle and morphogenesis of H. araneus L. larvae was studied in laboratory experiments. Larvae starved from hatching (zoea I) or from moulting to later instars (zoea II, megalopa) develop, independently of food supply, to Stage C (intermoult). Postmoult Stages (A and B) and parts of intermoult are completed by utilizing internal body reserves under such conditions but cuticle formation is terminated at an advanced but incomplete stage within intermoult. In the zoea-II instar there is morphogenesis in appendages (pereiopod and pleopod buds) during continuous starvation. This supports the hypothesis that moult cycle and morphogenesis may be partly independent processes which are normally synchronized.
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  • 71
    Publication Date: 2019-07-17
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    In:  EPIC3Aarde & Kosmos, 1, pp. 20-24
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  • 73
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    In:  EPIC3unpublished manuscript
    Publication Date: 2019-07-16
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  • 74
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    In:  EPIC3Ocean Modelling, 59, pp. 1-4
    Publication Date: 2019-07-16
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    Publication Date: 2019-07-17
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  • 77
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    In:  EPIC3Journal of plant physiology, 116, pp. 447-453
    Publication Date: 2019-07-17
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  • 79
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    In:  EPIC3Antarctic J U S, 19, pp. 137-138
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  • 80
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    In:  EPIC3Polar biology, 2, pp. 245-250
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  • 81
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    In:  EPIC3Wiss Arbeiten d Fachr Vermessungswesen Univ Hannover, 129, 205 p.
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  • 82
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    In:  EPIC3Satelliten-Doppler-Messungen (A Schödlbauer, W Welsch, Hrsg ) Schr -reihe Wiss Studiengang Vermessungswesen, Hochschule d Bundeswehr, München, 15, pp. 267-306
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    Publication Date: 2019-07-16
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    In:  EPIC3Initial Reports DSDP, 79, pp. 385-394
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    In:  EPIC3Journal of Plant Physiology, 116, pp. 447-453
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  • 89
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    In:  EPIC3Mitteilungen der Deutschen Meteorologischen Gesellschaft, 2(84), pp. 54-55
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  • 90
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    In:  EPIC3Reports on Polar Research, Alfred Wegener Institute for Polar and Marine Research, Bremerhaven, 19, pp. 82-97
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  • 91
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    In:  EPIC3Deutsche Wissenschaftliche Kommission, Hamburg.
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  • 92
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    In:  EPIC3Scripps Institute of Oceanography, La Jolla, USA.
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  • 93
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    In:  EPIC3Marine Micropaleontology, 9, pp. 93-110
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  • 94
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    In:  EPIC3in: Report of the CAS/JSC meeting of experts on sea ice and climate modelling, Geneva, 12-16 Dec. 1983, World Climate Programme, WCP-77.
    Publication Date: 2019-07-17
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  • 95
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    In:  EPIC3MIZEX-Bull, 5, pp. 12-13
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  • 96
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    In:  EPIC3Reports on Polar Research, Alfred Wegener Institute for Polar and Marine Research, Bremerhaven, 17, 77 p.
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  • 97
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    In:  EPIC3Reports on Polar Research, Alfred Wegener Institute for Polar and Marine Research, Bremerhaven, 18, 92 p.
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  • 98
    Publication Date: 2019-07-16
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  • 99
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    In:  Mededelingen van het Botanisch Museum en Herbarium van de Rijksuniversiteit te Utrecht (2352-5754) vol.174 (1961) nr.1 p.112
    Publication Date: 2015-05-08
    Description: In three former river beds of the river Waal near Zaltbommel a study was made of the factors which determine the differentiation in the vegetation. The water in each of the three beds is eutrophic. One of the beds is situated inside the main dike of the present river, the two other ones outside the latter, i.e. in the area which is exposed to the yearly returning floods. In only one of the two former river beds outside the dike a current is noticeable during these periods. At that time clay is deposited, and the bottom of these two beds accordingly consists of clay. In the former bed that is protected against these floods by the dike, only in the central part of the bottom the clay is still exposed, whereas nearer to the bank it is covered by a layer of peat. The vegetation in so far as it might be regarded as a natural one, was studied in detail, and appeared to consist in the main of a community belonging to the Potamion (in the deeper part), pioneer facies of the Scirpeto-Phragmitetum (Phragmition), later stages in the development of this association (a.o. “floating mat” -communities), one belonging to the Magnocaricion (in the shallower water), and, in the case of the former bed inside the dike, a carr-wood. The vegetation varied, however, in the different beds and eventually also in different parts of the same bed. The way in which the vegetation in the three former river beds differs, appeared to depend i.a. on the degree in which the various species are able to resist the current, and this mainly depends on their way of rooting. Only species like Phragmites and Scirpus lacustris can maintain themselves in places that are exposed to a strong current, because they are firmly anchored in the soil. Weakly anchored species like the two Typha’s are found only in places where there is no current, and the development of floating mats is possible only in stagnant water. Apart from the presence or absence of a current, important factors are the depth of the water and the consistence of the soil in which the plants are rooting. The correlation between the depth of the water and the nature of the vegetation appears in the succession of the Potamion by way of the pioneer facies of the Scirpeto- Phragmitetum to the later stages in the development of this association. In less deep water the consistence of the soil comes to the fore. In the former beds outside the dike the vegetations belonging to the Scirpeto-Phragmitetum grow on a muddy soil showing little or no cohesion, but the Caricetum gracilis-vesicariae (Magnocaricion) is confined to soils showing a higher degree of rigidity. Of great importance is the faculty to multiply vegetatively by means of rhizomes, which is found everywhere where a definite species determines the character of the vegetation, i.e. where a definite facies is present. This applies to the vegetations found on the floating mats too, which possess a frame work consisting of rhizomes. At first the latter belong exclusively to Typha angustifolia, but in subsequent stages of their development rhizomes of other species too take part in the development of this frame work. In the course of their development these floating mats may reach a considerable thickness. This growth in thickness is accompanied by a change in the type of vegetation. In the bed behind the dike the floating mats are particularly well-developed, but at places where in this bed no floating mats are present, the plant remains sink to the bottom, where they give rise to the formation of a layer of peat. On the latter a vegetation of Carex riparia, representing the Magnocaricion, and a Salix cinerea-stand develops. The plant remains found in the bottom (peat as well as clay) were studied by the aid of the microscope, and in this way it proved possible to reconstruct the succession in the beds, except in those places where during the period of flood a current is present, because in that case the plant remains are swept away. It was proved that a vegetation belonging to the Potamion appeared first and was always succeeded by pioneer facies of the Scirpeto-Phragmitetum, eventually followed by later stages in the development of this association. The Caricetum gracilis-vesicariae, on the other hand, was no stage in this succession, but developed in the shallow water of the marginal zone on a bare soil. The floating mats in their initial stage appeared to develop as an extension of a Typha angustifolia-vegetation rooting in the bottom, overgrowing subsequently the pioneer facies of Equisetum fluviatile and/or a Potamion-vegetation. Other species settled on the floating mat as soon as it attained a certain thickness because of sedimentation of clay and/or plant remains. Below the floating mats in the bed behind the dike a layer of peat was found which proved to consist of remains of Stratiotes aloides, a species which at present is met here but rarely. Peat of the same composition was also present below the open spaces between the floating mats, i.e. on the spots where the vegetation of Carex riparia and that of Salix cinerea is found.
    Repository Name: National Museum of Natural History, Netherlands
    Type: Article / Letter to the editor
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  • 100
    facet.materialart.
    Unknown
    In:  Mededelingen van het Botanisch Museum en Herbarium van de Rijksuniversiteit te Utrecht (2352-5754) vol.541 (1984) nr.1 p.49
    Publication Date: 2015-05-08
    Description: The wood anatomy of all tribes of the Urticaceae, a family of herbs, shrublets, and sometimes shrubs, trees or lianas, has been studied and described in detail. Special attention is given to the interpretation of the characters in terms of taxonomy and phylogeny. A classification, in part deviating from the existing morphological classification, is presented. Finally, the relationship within the Urticaceae, as well as the relationships with the Ulmaceae and Moraceae (including Cecropiaceae) are discussed.
    Repository Name: National Museum of Natural History, Netherlands
    Type: Article / Letter to the editor
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