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  • 1
    Monograph available for loan
    Monograph available for loan
    Xining : Qinghai People's Publ. House
    Associated volumes
    Call number: AWI Bio-18-91553-1
    In: Flora Qinghaiica, Vol. 1
    Type of Medium: Monograph available for loan
    Pages: 544 Seiten , Illustrationen
    ISBN: 722501448x
    Language: Chinese , Latin
    Note: Contents: Selaginellaceae, Equisetaceae, Pteridaceae, Sinopteridaceae, Adiataceae, Hemionidaceae, Athyriaceae, Aspleniaceae, Onocleaceae, Woodsiaceae, Dryopteridaceae, Polypodiaceae, Drynariaceae, Pinaceae, Cupressaceae, Ephedraceae, Utricaceae / Mei Li-juan. - Salicaceae / Ding Tuo-ya. - Juglandaceae, Betulaceae, Fagaceae, Ulmaceae, Moraceae, Santalaceae, Loranthaceae, Polygonaceae, Chenopodiaceae, Amaranthaceae, Cruciferae / Huang Rong-fu. - Caryophyllaceae, Ranunculaceae, Berberidaceae, Lauraceae, Papaveraceae / Zhou Li-hua. - Delineatores / Wang Ying, Yan Cui-lan, Liu Jin-jun, Zhang Gui-zhi, Feng Jin-huan, Zhou Qing-jun. , In chines. Schr. - Nomenklatur in lat. Schr.
    Location: AWI Reading room
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  • 2
    Call number: AWI Bio-18-91599-26
    In: Flora Reipublicae Popularis Sinicae, Tomus 26
    Type of Medium: Monograph available for loan
    Pages: 506 Seiten , Illustrationen
    ISBN: 7030048873
    Language: Chinese , Latin
    Note: Table of Contents: NYCTAGINACEAE. - 1. Pisonia L. - 1. P. aculeata L.. - 2. Ceodes J. et G. Forst. - 1. C. grandis (R. Br.) D. Q. Lu. - 2. C. umbellifera J. et G. Forst. - 3. Bougainvillea Comm. ex Juss. - 1. B. glabra Choisy. - 2. spectabilis Willd. - 4. Mirabilis L. - 1. M. jalapa L. - 5. Oxybaphus L' Her. ex Willd. - 1. O. himalaicus Edgew. - 6. Boerhavia L. - 1. B. diffusa L. - 2. B. erecta L.. - 3. B. crispa Heyne. - 7. Commicarpus Standl. - 1. C. chinensis (L. ) Heim. - 2. C. lantsangensis D. Q. Lu. - PHYTOLACCACEAE. - 1. Phytolacca L. - 1. Ph. acinosa Roxb. - 2. Ph. polyandra Batalin. - 3. Ph. japonica Makino. - 4. Ph. americana L. - 2. Rivina L. - 1. R. humilis L. - AIZOACEAE. - 1. Gisekia L. - 1. G. pharnaceoides L. - 2. Glinus L. - 1. Gl. lotoides L. - 2. Gl. oppositifolius (L.) A. DC. - 3. Mollugo L. - 1. M. nudicaulis Lam. - 2. M. cerviana (L.) Ser. - 3. M. stricta L. - 4. M. verticillata L. - 4. Sesuvium L. - 1. S. portulacastrum (L.) L. - 5. Trianthema L. - 1. Tr. portulacastrum L. - 6. Mesembryanthemum L. - 1. M. cordifolium L. f. - 2. M. crystallinum L. - 3. M. uncatum Salm-Dyck. - 4. M. edule L.. - 5. M. spectabile Haw. - 7. Tetragonia L. - 1. T . tetragonioides (Pall. ) Kuntze. - PORTULACACEAE. - 1. Portulaca L. - 1. P. oleracea L. - 2. P. pilosa L. - 3. P. grandiflora Hook - 4. P. quadrifida L. - 5. P. psammotropha Hance. - 6. P. insularis Hosokawa. - 2. Talinum Adans. - 1. T. paniculatum (Jacq.) Gaertn. - BASELLACEAE. - 1. Basella L. - 1. B. alba L. - 2. Anredera Juss. - 1. A. scandens (L.) Moq. - 2. A. cordifolia (Tenore) Steenis. - CARYOPHYLLACEAE. - I. Subfam. PARONYCHIOIDEAE Vierh. - 1. Trib. PARONYCHIEAE Pax. - 1. Gymnocarpos Forssk. - 1. G. przewalskii Maxim. - 2. Herniaria L. - 1. H. glabra L. - 2. H. polygama J. Gay. - 3. H. caucasica Rupr. - 2. Trib. SPERGULEAE Vierh. - 3. Spergula L. - 1. Sp. arvensis L. - 4. Spergularia (Pers.) J. et C. Presl. - 1. Sp. rubra (L.) J. et C. Presl. - 2. Sp. diandra (Guss.) Heldr. et Sart. - 3. Sp. media (L.) C. Presl. - 4. Sp. salina J. et C. Presl. - 3. Trib. POLYCARPEAE Pax. - 5. Drymaria Willd. ex Roem. et Schult. - 1. Dr. villosa Cham. et Schlecht. - 2. Dr. diandra Bl. - 6. Polycarpon Loefl. ex L. - 1. P. prostratum (Forssk.) Aschers. et Schweinw. - 7. Polycarpaea Lam. - 1. P. corymbosa (L.) Lam. - 2. P. gaudichaudii Gagnep. - ll. Subfam. ALSINOIDEAE Vierh. - 1. Subtrib. STELLARIINAE Aschers. et Graebn. - 8. Pseudostellaria Pax. - 1. Ps. sylvatica (Maxim.) Pax. - 2. Ps. heterophylla (Miq.) Pax. - 3. Ps. japonica (Korsh.) Pax. - 4. Ps. davidii (Franch.) Pax. - 5. Ps. rupestris (Turcz.) Pax. - 6. Ps. heterantha (Maxim.) Pax. - 7. Ps. himalaica (Franch.) Pax. - 8. Ps. maximowicziana (Franch. et Sav.) Pax. - 9. Myosoton Moench. - 1. M. aquaticum (L.) Moench. - 10. Cerastium L. - 1. C. cerastoides (L.) Britt. - 2. C. pauciflorum Stev. ex Ser. - 3. C. falcatum Bge. - 4. C. maximum L. - 5. C. lithospermifolium Fisch. - 6. C. dahuricum Fisch. - 7. C. perfoliaturn L. - 8. C. glomeratum Thuill. - 9. C. furcatum Cham. et Schlecht. - 10. C. fontanum Baumg. - 11. C. tianschanicum Schischk. - 12. C. limprichtii Pax et Hoffm. - 13. C. szechuense Williams. - 14. C. wilsonii Takeda. - 15. C. pusillum Ser. - 16. C. baischanense Y. C. Chu. - 17. C. arvense L. - 18. C. subpilosum Hayata. - 11. Stellaria L. - 1. Sect. Stellaria. - 1. Subsect. Stellaria. - 1. Ser. Petiolares Fenzl. - 1. St. bungeana Fenzl. - 2. St. nemorum L. - 3. St. nepalensis Majumdar et Vartak. - 4. St. arisanensis (Hayata) Hayata. - 5. St. wushanensis Williams. - 6. St. neglecta Weihe ex Bluff et Fingerh. - 7. St. media (L.) Cyr. - 8. St. apetala Ucria ex Roem. - 9. St. vestita Kurz. - 10. St. chinensis Regel. - 11. St. pilosa Franch. - 12. St. petiolaris Hand. -Mazz. - 13. St. lanipes C. Y. Wu et H. Chuang. - 2. Ser. Sessilifoliae Y. W. Tsui ex P. Ke. - 14. St. omeiensis C. Y. Wu et Y. W. Tsui ex P. Ke. - 15. St. reticulivena Hayata. - 16. St. infracta Maxim. - 17. St. gyirongensis L. H. Zhou. - 18. St. zangnanensis L. H. Zhou. - 19. St. tibetica Kurz. - 20. St. lanata Hook. f. ex Edgew. et Hook. f. - 21. St. patens D. Don. - 3. Ser. Dichotomae Roshev. - 22. St. dichotoma L. - 23. St. amblyosepala Schrenk. - 4. Ser. Holosteae Fenzl. - 24. St. henryi Williams. - 2. Subsect. Larbraea (St. Hil.) Fenzl. - 1. Ser. Foliaceo-bracteatae Schischk. - 25. St. ebracteata Korn. - 26. St. winkleri (Briq.) Schischk. - 27. St. crassifolia Ehrh. - 2. Ser. Discolares Schischk. - 28. St. discolor Turcz. - 29. St. gyangtseensis Williams. - 3. Ser. Uliginosae Schischk. - 30. St. pusilla E. Schmid. - 31. St. mainlingensis L. H. Zhou. - 32. St. depressa E. Schmid. - 33. St. uliginosa Murr. - 4. Ser. Gramineae Roshev. - 34. St. graminea L. - 35. St. brachypetala Bge. - 36. St. yunnanensis Franch. - 37. St. palustris Ehrh. ex Retz. - 38. St. salicifolia Y. W. Tsui ex P. Ke. - 39. St. dianthifolia Williams. - 40. St. longifolia Muehl. ex Willd. - 41. St. imbricata Bge. - 42. St. nipponica Ohwi. - 43. St. filicaulis Makino. - 5. Ser. Parviflorae Schischk. - 44. St. alaschanica Y. Z. Zhao. - 45. St. oxycoccoides Korn. - 46. St. uda Williams. - 47. St. souliei Williams. - 6. Ser. Pedunculares Schischk. - 48. St. soongorica Roshev. - 7. Ser. Umbellatae Schischk. - 49. St. irrigua Bge. - 50. St. parvi-umbellata Y. Z. Zhao. - 51. St. umbellata Turcz. - 52. St. suburnbellata Edgew.. - 2. Sect. Adenonerna (Bge.) Pax. - 53. St. arenaria Maxim.. - 54. St. cherleriae (Fisch. ex Ser.) Williams. - 55. St. petraea Bge. - 56. St. decumbens Edgew. - 57. St. congestiflora Hara. - 3. Sect. Fimbripetalurn Turcz. - 58. St. radians L. - 4. Sect. Leucostemma (Benth. ex G. Don f.) Pax. - 59. St. rnartjanovii Krylov. - 5. Sect. Schizothecium Fenzl. - 60. St. monosperma Buch. -Ham. ex D. Don. - 61. St. ovatifolia (Mizushima) Mizushima. - 62. St. delavayi Franch. - 6. Sect. Oligosperma Boiss. - 63. St. bistyla Y. Z. Zhao. - 64. St. strongylosepala Hand.-Mazz. - 12. Holosteum L. - 1. H. umbellatum L. - 13. Arenaria L. - 1. Subgen. Arenaria. - 1. Sect. Arenaria. - 1. A. serpyllifolia L. - 2. Sect. Rotundifoliae McNeill. - 2. A. orbiculata Royle ex. Edgew. et Hook f. - 3. A. neelgerrensis Wight et Arn. - 3. Sect. Rariflorae Williams. - 4. A. monosperma Williams. - 5. A. puranensis L. H. Zhou. - 4. Sect. Compressae McNeill. - 6. A. compressa McNeill. - 2. Subgen. Eremogone (Fenzl) Fenzl. - 1. Sect. Monogone Maxim. - 7. A. potaninii Schischk. - 2. Sect. Capillares McNeill. - 8. A. juncea M. Bieb. - 9. A. capillaris Poir. - 10. A. acicularis Williams ex Keissler. - 11. A. grüningiana Pax et Hoffm. - 12. A. formosa Fisch. ex Ser. - 13. A. haitzeshanensis Y. W. Tsui. - 3. Sect. Sclerophyllae (Boiss.) McNeill. - 14. A. griffithii Boiss. - 15. A. androsacea Grub. - 3. Subgen. Eremogoneastrum Williams. - 16. A. brevipetala Y. W. Tsui et L. H. Zhou. - 17. A. baxoiensis L. H. Zhou. - 18. A. kumaonensis Maxim. - 19. A. kansuensis Maxim. - 20. A. ischnophylla Williams. - 21. A. roborowskii Maxim. - 22. A. lancangensis L. H. Zhou. - 23. A. gerzeensis L. H. Zhou. - 24. A. qinghaiensis Y. W. Tsui et L. H. Zhou. - 25. A. aksayqingensis L. H. Zhou. - 26. A. pulvinata Edgew. - 27. A. shannanensis L. H. Zhou. - 28. A. edgeworthiana Majumdar. - 29. A. bryophylla Fernald. - 30. A. zadoiensis L. H. Zhou. - 31. A. taibaishanensis L. H. Zhou. - 32. A. festucoides Benth. - 4. Subgen. Dolophragma (Fenzl) McNeill. - 33. A. przewalskii Maxim. - 34. A. smithiana Mattf. - 35. A. oreophila Hook. f. ex Edgew. et Hook. f. - 36. A. densissima Wall. ex Edgew. et Hook. f. - 37. A. polytrichoides Edgew. ex. Edgew. et Hook f. - 5. Subgen. Solitaria McNeill. - 38. A. ciliolata Edgew. - 39. A. ramellata Williams. - 40. A. stracheyi Edgew. - 41. A. rhodantha Pax et Ho , Text in chinesischer Schrift , Überschriften in lateinischer Sprache
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  • 3
    ISSN: 1089-7550
    Source: AIP Digital Archive
    Topics: Physics
    Notes: We describe the consequences on the interlayer exchange coupling by the addition of a small amount of Ag impurities within the Co layers of high crystalline quality Co/Cu/Co(Ag) and Cu/Ru/Co(Ag) trilayers, while maintaining the integrity of the spacer layers. We discuss the consequent changes in the amplitude, period, and phase of the coupling in terms of the modification of interfacial spin-dependent potentials. © 1996 American Institute of Physics.
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  • 4
    ISSN: 1520-4804
    Source: ACS Legacy Archives
    Topics: Chemistry and Pharmacology
    Type of Medium: Electronic Resource
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  • 5
    ISSN: 1520-4804
    Source: ACS Legacy Archives
    Topics: Chemistry and Pharmacology
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  • 6
    Electronic Resource
    Electronic Resource
    Oxford, UK : Blackwell Publishing Ltd
    Asian Pacific economic literature 10 (1996), S. 0 
    ISSN: 1467-8411
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Economics
    Notes: One consequence of economic reform in China has been the greatly accelerated migration of labour from rural areas to cities. Estimates suggest an annual migrant labour flow of around 50-60 million people, of whom 10–15 million have settled permanently in cities. This article surveys the information that has become available from a number of population and labour surveys. It covers the volume, spatial and temporal dimension of rural-to-urban migration, the characteristics of migrant labourers, the determinants of migration and the impact of migration on China's rural and urban economy.
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  • 7
    Electronic Resource
    Electronic Resource
    s.l. ; Stafa-Zurich, Switzerland
    Key engineering materials Vol. 104-107 (July 1995), p. 549-600 
    ISSN: 1013-9826
    Source: Scientific.Net: Materials Science & Technology / Trans Tech Publications Archiv 1984-2008
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
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  • 8
    Electronic Resource
    Electronic Resource
    s.l. ; Stafa-Zurich, Switzerland
    Key engineering materials Vol. 116-117 (Dec. 1995), p. 121-132 
    ISSN: 1013-9826
    Source: Scientific.Net: Materials Science & Technology / Trans Tech Publications Archiv 1984-2008
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
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  • 9
    ISSN: 1573-3904
    Keywords: Conformation ; Inhibition ; Peptide ligand ; Polyamine binding site
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Abstract Converging lines of evidence suggest that the N-methyl-D-aspartic acid (NMDA) antagonistproperties of conantokin G (ConG) are mediated through a novel polyamine-associated site.Moreover, structural modification of the heptadecapeptide yields peptides that can eithermimic the NMDA antagonist properties of the parent peptide or produce polyamine-likeactions at NMDA receptors. We synthesized a panel of ConG fragments and evaluated theireffects using a neurochemical assay that predicts pharmacological actions at NMDA receptors.While the C-terminal tetrapeptide elicited a polyamine-like activation of [3H]MK-801 bindingwith a potency comparable to spermine, the N-terminal pentapeptide produced a marginalinhibition of spermine-enhanced [3H]MK-801 binding. These observations suggest that theparent peptide interacts with two distinct sites on NMDA receptors. In contrast, amino acidreplacements in the middle region of ConG resulted in analogues that were of comparable orgreater potency than the parent peptide. The Ala7,Tyr10 derivative is of particular interestsince it is a potent inhibitor (IC50 ∼ 80 nM) of spermine-enhanced [3H]MK-801 binding, andmay thus serve as a precursor for studies designed to 125I-label putative ConG binding sites.Our observations are also consistent with the hypothesis that the termini of ConG are essentialfor an interaction with NMDA receptors, while the middle region of this peptide serves as aspacer unit. This hypothesis is consonant with spectroscopic evidence that ConG possessesa central rigid helical backbone with flexible N- and C-terminal regions. Nonetheless, ConGvariants in which the termini were connected with conformationally stabilizedα- or 310-helical spacers grew progressively less potent as NMDA antagonists as the structural stabilityof these peptides increased. Thus, the middle region of ConG appears to possess functionsother than providing conformational stability. These newly synthesized ConG derivatives mayserve as a basis for the design of novel peptidic or peptidomimetic agents.
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  • 10
    ISSN: 1573-3904
    Keywords: Conformation ; Inhibition ; Peptide ligand ; Polyamine binding site
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Summary Converging lines of evidence suggest that theN-methyl-d-aspartic acid (NMDA) antagonist properties of conantokin G (ConG) are mediated through a novel polyamine-associated site. Moreover, structural modification of the heptadecapeptide yields peptides that can either mimic the NMDA antagonist properties of the parent peptide or produce polyamine-like actions at NMDA receptors. We synthesized a panel of ConG fragments and evaluated their effects using a neurochemical assay that predicts pharmacological actions at NMDA receptors. While the C-terminal tetrapeptide elicited a polyamine-like activation of [3H]MK-801 binding with a potency comparable to spermine, the N-terminal pentapeptide produced a marginal inhibition of spermine-enhanced [3H]MK-801 binding. These observations suggest that the parent peptide interacts with two distinct sites on NMDA receptors. In contrast, amino acid replacements in the middle region of ConG resulted in analogues that were of comparable or greater potency than the parent peptide. The Ala7, Tyr10 derivative is of particular interest since it is a potent inhibitor (IC50≈80 nM) of spermine-enhanced [3H]MK-801 binding, and may thus serve as a precursor for studies designed to125I-label putative ConG binding sites. Our observations are also consistent with the hypothesis that the termini of ConG are essential for an interaction with NMDA receptors, while the middle region of this peptide serves as a spacer unit. This hypothesis is consonant with spectroscopic evidence that ConG possesses a central rigid helical backbone with flexible N- and C-terminal regions. Nonetheless, ConG variants in which the termini were connected with conformationally stabilized α-or 310-helical spacers grew progressively less potent as NMDA antagonists as the structural stability of these peptides increased. Thus, the middle region of ConG appears to possess functions other than providing conformational stability. These newly synthesized ConG derivatives may serve as a basis for the design of novel peptide or peptidomimetic agents.
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