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  • 1
    Publication Date: 2023-11-01
    Keywords: Abies; Acer; Age, 14C conventional; Age, dated; Age, dated standard deviation; Alnus; Anemone-type; Anthoceros; Apiaceae; Artemisia; Athyrium filix-femina; Avena-type; Batrachium; Betula; Beug_pollen-archive; Blechnum; Brassicaceae; Callitriche; Calluna; Caltha; Campanulaceae; Carpinus; Caryophyllaceae; Centaurea; Centaurea cyanus; Centaurea jacea-type; Cerealia-type; Changes in the Geo-Biosphere during the last 15000 years; Chenopodiaceae; Cichorioideae; Cladium; Convolvulus arvensis; Cornus; Corydalis; Corylus; Counting, palynology; Cyperaceae; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Drosera; Dryopteris austriaca; Dryopteris cristata; Dryopteris filix-mas; Dryopteris linnaeana; Empetrum; Epilobium; Equisetum; Euphrasia; Fabaceae; Fagopyrum; Fagus; Filicinae; Filipendula; Frangula alnus; Fraxinus; Gentianaceae; GeoBio15k; Geum-type; Gramineae; Gymnocarpium dryopteris; HAND; Harz, Germany; Hedera; Helianthemum; Hippuris vulgaris; Hordeum-type; Humulus and Cannabis; Hydrocharis; Hypericum; Ilex; Impatiens; Juglans; Juniperus; Lamiaceae; Lemna; Linum; Lonicera xylosteum; Lycopodium annotinum; Lycopodium clavatum-type; Lythrum; Melampyrum; Menyanthes; Mercurialis; Ophioglossum; Picea; Pinus; Plantago lanceolata; Plantago major/media; Polygonum aviculare; Polygonum convolvulus; Polygonum hydropiper; Polypodium; Populus; Potamogeton; Potentilla-type; Pteridium; Quercus; Ranunculus acris-type; Rhamnus catharticus; Rosaceae; Rubiaceae; Rumex; Salix; Salvia; Sambucus ebulus-type; Sambucus racemosa-type; Sampling by hand; Sampling on land; Sanguisorba minor; Sanguisorba officinalis; Scrophulariaceae; Secale; SILBERHO; Silberhohl; Sorbus-type; Sparganium-type; Sphagnum; Succisa; Thalictrum; Thelypteris palustris; Tilia; Tilia cordata-type; Tilia platyphyllos-type; Trifolium; Triticum-type; Trollius; Tubuliflorae indeterminata; Typha latifolia-type; Ulmus; Urtica; Vaccinium-type; Valeriana dioica; Valeriana officinalis; Varia; Viburnum opulus; Viscum; Vitis; Zea mays
    Type: Dataset
    Format: text/tab-separated-values, 16125 data points
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  • 2
    Publication Date: 2023-11-01
    Keywords: Abies; Acer; Age, 14C conventional; Age, dated; Age, dated standard deviation; Alnus; Anemone-type; Apiaceae; Artemisia; Athyrium filix-femina; Batrachium; Betula; Beug_pollen-archive; Blechnum; Botrychium; Brassicaceae; Calluna; Caltha; Campanulaceae; Carpinus; Caryophyllaceae; Castanea; Centaurea cyanus; Cerealia-type; Changes in the Geo-Biosphere during the last 15000 years; Chenopodiaceae; Cichorioideae; Cladium; Corylus; Counting, palynology; Cyperaceae; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Dryopteris cristata; Dryopteris filix-mas; Empetrum; Ephedra distachya-type; Epilobium; Equisetum; Fabaceae; Fagus; Filicinae; Filipendula; Fraxinus; Gentianaceae; GeoBio15k; Gramineae; HAND; Harz, Germany; Hedera; Helianthemum; Hippophae; Hordeum-type; Humulus and Cannabis; Juniperus; Knautia; Lamiaceae; Lemna; Liliaceae; Luederholz-1; Lycopodium selago; Lysimachia; Melampyrum; Nymphaea; Ophioglossum; Picea; Pinus; Plantago lanceolata; Plantago major/media; Polemonium caeruleum; Polygonum aviculare; Polygonum convolvulus; Polygonum hydropiper; Polypodium; Potamogeton; Potentilla-type; Pteridium; Quercus; Ranunculus acris-type; Rhamnus catharticus; Rosaceae; Rubiaceae; Rumex; Salix; Sampling by hand; Sampling on land; Sanguisorba officinalis; Scrophulariaceae; Secale; Sparganium-type; Sphagnum; Thalictrum; Thelypteris palustris; Tilia cordata-type; Tilia indeterminata; Tilia platyphyllos-type; Triticum-type; Tubuliflorae indeterminata; Typha latifolia-type; Ulmus; Urtica; Valeriana dioica; Valeriana officinalis; Viscum; Zea mays
    Type: Dataset
    Format: text/tab-separated-values, 3193 data points
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  • 3
    Publication Date: 2023-11-01
    Keywords: Abies; Acer; Alisma; Alnus; Anemone-type; Apiaceae; Artemisia; Athyrium; Batrachium; Betula; Beug_pollen-archive; Botrychium; Brassicaceae; Calluna; Caltha; Campanulaceae; Carpinus; Caryophyllaceae; Centaurea cyanus; Centaurea jacea-type; Cerealia-type; Changes in the Geo-Biosphere during the last 15000 years; Chenopodiaceae; Cichorioideae; Cladium; Corylus; Counting, palynology; Cyperaceae; DEPTH, sediment/rock; Dryopteris filix-mas; Empetrum; Equisetum; Fabaceae; Fagus; Filicinae; Filipendula; Frangula alnus; Fraxinus; GeoBio15k; Geranium; Gramineae; HAND; Harz, Germany; Hedera; Helianthemum; Hippophae; Hordeum-type; Humulus and Cannabis; Hypericum; Juniperus; Knautia; Lamiaceae; Lemna; Luederholz-2; Lysimachia; Lythrum; Melampyrum; Nymphaea; Ophioglossum; Picea; Pinus; Plantago lanceolata; Plantago major/media; Polemonium caeruleum; Polygonum aviculare; Polypodium; Potamogeton; Potentilla-type; Pteridium; Quercus; Ranunculus acris-type; Rhamnus catharticus; Rosaceae; Rubiaceae; Rumex; Salix; Sampling by hand; Sampling on land; Sanguisorba officinalis; Scrophulariaceae; Secale; Selaginella selaginoides; Sparganium-type; Sphagnum; Succisa; Thalictrum; Tilia cordata-type; Tilia indeterminata; Tilia platyphyllos-type; Triticum-type; Trollius; Tubuliflorae indeterminata; Typha latifolia-type; Ulmus; Urtica; Vaccinium-type; Valeriana dioica; Valeriana officinalis; Varia; Viscum
    Type: Dataset
    Format: text/tab-separated-values, 3150 data points
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  • 4
    Publication Date: 2023-11-01
    Keywords: Abies; Acer; Alnus; Anthoceros laevis; Anthoceros punctatus; Apiaceae; Armeria; Artemisia; Athyrium; Avena-type; Betula; Beug_pollen-archive; Botrychium; Brassicaceae; Calluna; Caltha; Campanulaceae; Carpinus; Caryophyllaceae; Castanea; Centaurea cyanus; Centaurea jacea-type; Centaurea scabiosa-type; Cerealia-type; Changes in the Geo-Biosphere during the last 15000 years; Chenopodiaceae; Cichorioideae; Cladium; Cornus sanguinea; Corylus; Counting, palynology; Cyperaceae; DEPTH, sediment/rock; Drosera; Dryopteris cristata; Dryopteris filix-mas; Empetrum; Ephedra; Epilobium; Epipactis; Equisetum; Fagus; Filicinae; Filipendula; Frangula; Fraxinus; Gentianaceae; GeoBio15k; Geranium; Geum-type; Gramineae; HAND; Hedera; Helianthemum; Hippophae; Hordeum-type; Humulus and Cannabis; Hydrocharis; Hypericum; Ilex; Indeterminable: indeterminata; Juglans; Juniperus; Lamiaceae; Lemna; Ligustrum; Linum; Linum usitatissimum; LUTTERS2; Luttersee, Untereichsfeld, Germany; Luttersee-2; Lycopodium annotinum; Lycopodium clavatum-type; Lythrum; Melampyrum; Menyanthes; Mercurialis; Myriophyllum alterniflorum; Myriophyllum verticillatum-type; Nuphar; Nymphaea; Ophioglossum; Osmunda; Papilionaceae; Picea; Pinus; Plantago lanceolata; Plantago major/media; Polemonium; Polygonum aviculare; Polygonum persicaria-type; Polypodium; Populus; Potamogeton; Potentilla-type; Pteridium; Quercus; Ranunculus acris-type; Ranunculus subgen. Batrachium-type; Rhamnus catharticus; Rubiaceae; Rumex; Rumex eurumex-type; Salix; Salvia; Sambucus; Sampling by hand; Sampling on land; Sanguisorba minor; Sanguisorba officinalis; Scrophulariaceae; Secale; Selaginella selaginoides; Solanum; Sorbus-type; Sparganium-type; Sphagnum; Succisa; Thalictrum; Thelypteris palustris; Tilia cordata-type; Tilia indeterminata; Tilia platyphyllos-type; Trifolium; Triticum-type; Trollius; Tubuliflorae indeterminata; Typha latifolia-type; Ulmus; Urtica; Utricularia; Vaccinium-type; Valeriana dioica; Valeriana officinalis; Varia; Viburnum opulus; Viscum; Zea mays
    Type: Dataset
    Format: text/tab-separated-values, 20608 data points
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  • 5
    Electronic Resource
    Electronic Resource
    s.l. : American Chemical Society
    Journal of agricultural and food chemistry 32 (1984), S. 999-1001 
    ISSN: 1520-5118
    Source: ACS Legacy Archives
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition , Process Engineering, Biotechnology, Nutrition Technology
    Type of Medium: Electronic Resource
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  • 6
    Electronic Resource
    Electronic Resource
    Springer
    Development genes and evolution 185 (1978), S. 59-77 
    ISSN: 1432-041X
    Keywords: Nerve differentiation ; Pioneer fibres ; Imaginal discs ; β-ecdysone-Drosophila
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary An ultrastructural analysis is presented of the cuticular and neural structures formed by the prothoracic leg and wing imaginal discs of maleDrosophila melanogaster larvae during culture in vitro with 0.2 μg/ml of β-ecdysone. A pupal cuticle, and subsequently an imaginal cuticle with a well-defined epicuticle and a laminated endocuticle is formed. The ultrastructure of the epidermis and of cuticular structures such as bristles, trichomes, apodemes, and tracheoles is very similar to that found in situ. Dendrites and nerve cell bodies are formed in vitro, and sensory axons form nerve bundles similar to those of normal appendages in situ, despite their isolation from the central nervous system. It is concluded that at the ultrastructural level, differentiation in vitro closely parallels the normal course of development.
    Type of Medium: Electronic Resource
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  • 7
    Electronic Resource
    Electronic Resource
    Springer
    Development genes and evolution 186 (1979), S. 151-178 
    ISSN: 1432-041X
    Keywords: Abdominal cerci ; Pioneer fibres ; Acheta domesticus ; Sensory neurogenesis ; Sensillar neurons
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary 1. The embryonic development of the abdominal cerci of the house cricketAcheta domesticus is described from scanning and transmission electron microscope data. 2. A staged description of externally visible events in embryogenesis is tabulated as a context for describing the chronology of embryonic development of the abdominal cerci. 3. Three phases of cercal development are distinguished: differentiation of the cercal anlagen and secretion of the first embryonic cuticle; elongation of the cercus culminating in the secretion of the second embryonic cuticle after completion of a continuous epidermis at the time of dorsal closure; and differentiation of functional sensilla on the third embryonic (first instar) cuticle. 4. The first axon profiles appear in the cercus immediately before elongation of the cercus. These axons have dendrites with ciliary configuration in the lumen of the cercus. Glial cells associated with the pioneer axons may precede the axons in occupying dorsal and ventral luminal midlines of the cerci. 5. Trichoid sensilla appear in the integumet following apolysis of the second embryonic cuticle. 6. Axons are added to the dorsal and ventral pioneer fibre bundles shortly before sensilla become apparent. 7. The majority of sensory axons traverse the cercus during the final 15% of embryonic development. 8. The sensilla of the first instar cercus do not achieve their final orientation until the cercal cuticle is expanded following eclosion from the second embryonic cuticle that encloses the hatchling until it reaches a free surface. 9. The role of the pioneer fibres in establishing a pathway for the functional sensillar neurons is discussed in relation to other studies of sensillar development in insects.
    Type of Medium: Electronic Resource
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  • 8
    Electronic Resource
    Electronic Resource
    Springer
    Mathematische Annalen 204 (1973), S. 271-284 
    ISSN: 1432-1807
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mathematics
    Type of Medium: Electronic Resource
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  • 9
    Electronic Resource
    Electronic Resource
    Springer
    Mathematische Annalen 237 (1978), S. 157-159 
    ISSN: 1432-1807
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mathematics
    Type of Medium: Electronic Resource
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  • 10
    Electronic Resource
    Electronic Resource
    Springer
    Mathematische Annalen 255 (1981), S. 97-103 
    ISSN: 1432-1807
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mathematics
    Type of Medium: Electronic Resource
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