首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   455168篇
  免费   56112篇
  国内免费   281篇
  2018年   3985篇
  2017年   3672篇
  2016年   5681篇
  2015年   8534篇
  2014年   9490篇
  2013年   13300篇
  2012年   15338篇
  2011年   15425篇
  2010年   10203篇
  2009年   9432篇
  2008年   13407篇
  2007年   13890篇
  2006年   12596篇
  2005年   12333篇
  2004年   12108篇
  2003年   11498篇
  2002年   10980篇
  2001年   21685篇
  2000年   21812篇
  1999年   17452篇
  1998年   6276篇
  1997年   6516篇
  1996年   6332篇
  1995年   5737篇
  1994年   5776篇
  1993年   5600篇
  1992年   13664篇
  1991年   12983篇
  1990年   12661篇
  1989年   12509篇
  1988年   11173篇
  1987年   10800篇
  1986年   9885篇
  1985年   9663篇
  1984年   8197篇
  1983年   7088篇
  1982年   5535篇
  1981年   5018篇
  1980年   4656篇
  1979年   7689篇
  1978年   5920篇
  1977年   5439篇
  1976年   5070篇
  1975年   5373篇
  1974年   5818篇
  1973年   5666篇
  1972年   5101篇
  1971年   4731篇
  1970年   3920篇
  1969年   3853篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
71.
The heart rate and respiratory patterns in hypoxia are not well documented in unanaesthetized intact newborn animals. We studied heart rate and respiratory patterns during quiet sleep in 17% inspired O2 in 31 unanaesthetized newborns of five species: lamb, piglet, puppy, kitten, and rabbit. There was no significant change in mean heart rate and respiratory rate with hypoxia for any species. Brief apneas greater than 5 s were frequent (5-8/h), both in 21 and 17% O2 only in lambs and puppies. No sustained periodic breathing was induced by hypoxia. Thus, mild hypoxia has little steady-state effect on heart rate and respiratory rate and pattern in these unanaesthetized newborns. These findings are compatible with depressed chemoreceptor threshold, but indicate a remarkably mature respiratory pattern in full-term newborns of these species.  相似文献   
72.
73.
74.
75.
Synaptonemal complexes and meiosis in myxomycetes   总被引:4,自引:0,他引:4  
Synaptonemal complexes (SC) have been observed in spores 18–24 hr past cleavage in natural fruitings of Physarum cinereum, P. bogoriense, Hemitrichia stipitata, Tubifera ferruginosa, and Arcyria incarnata. Laboratory fruitings of Arcyria cinerea, Stemonitis herbatica, and a homothallic isolate of Physarum pusillum also have SC's present in spores during the same postcleavage period. The presence of these paired chromosomes of meiotic prophase in spores of species collected in nature and in a diversity of taxa suggests that the usual position of meiosis in Myxomycetes is inside the postcleavage spore. Criteria are proposed for evaluating the validity of the SC as an indicator of meiosis.  相似文献   
76.
77.
78.
The cell surface of the parasitic protozoan Leishmania mexicana is coated by glycosylphosphatidylinositol (GPI)-anchored glycoproteins, a GPI-anchored lipophosphoglycan and a class of free GPI glycolipids. To investigate whether the anchor or free GPIs are required for parasite growth we cloned the L.mexicana gene for dolichol-phosphate-mannose synthase (DPMS) and attempted to create DPMS knockout mutants by targeted gene deletion. DPMS catalyzes the formation of dolichol-phosphate mannose, the sugar donor for all mannose additions in the biosynthesis of both the anchor and free GPIs, except for a alpha1-3-linked mannose residue that is added exclusively to the free GPIs and lipophosphoglycan anchor precursors. The requirement for dolichol-phosphate-mannose in other glycosylation pathways in L.mexicana is minimal. Deletion of both alleles of the DPMS gene (lmdpms) consistently resulted in amplification of the lmdpms chromosomal locus unless the promastigotes were first transfected with an episomal copy of lmdpms, indicating that lmdpms, and possibly GPI biosynthesis, is essential for parasite growth. As evidence presented in this and previous studies indicates that neither GPI-anchored glycoproteins nor lipophosphoglycan are required for growth of cultured parasites, it is possible that the abundant and functionally uncharacterized free GPIs are essential membrane components.  相似文献   
79.
80.
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号