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   11256篇
  免费   851篇
  国内免费   650篇
  2024年   15篇
  2023年   138篇
  2022年   294篇
  2021年   461篇
  2020年   319篇
  2019年   384篇
  2018年   390篇
  2017年   307篇
  2016年   512篇
  2015年   678篇
  2014年   801篇
  2013年   862篇
  2012年   1049篇
  2011年   960篇
  2010年   596篇
  2009年   512篇
  2008年   612篇
  2007年   562篇
  2006年   494篇
  2005年   432篇
  2004年   378篇
  2003年   357篇
  2002年   324篇
  2001年   144篇
  2000年   143篇
  1999年   121篇
  1998年   87篇
  1997年   82篇
  1996年   70篇
  1995年   58篇
  1994年   65篇
  1993年   49篇
  1992年   63篇
  1991年   58篇
  1990年   52篇
  1989年   38篇
  1988年   26篇
  1987年   18篇
  1986年   32篇
  1985年   22篇
  1984年   30篇
  1983年   10篇
  1982年   14篇
  1981年   14篇
  1980年   13篇
  1979年   8篇
  1978年   8篇
  1977年   12篇
  1976年   11篇
  1975年   11篇
排序方式: 共有10000条查询结果,搜索用时 78 毫秒
981.
982.
983.
984.
马缨丹蛇潜蝇Ophiomyia lantanae(Froggatt,1919)首次在云南报道,对其形态特征和外生殖器特征进行了重新拍照、描述,编制了中国蛇潜蝇属分种检索表,列出了24种蛇潜蝇的寄主植物和分布。  相似文献   
985.
The sterol regulatory element-binding protein (SREBP) and SREBP cleavage-activating protein (SCAP) are central players in the SREBP pathway, which control the cellular lipid homeostasis. SCAP binds to SREBP through their carboxyl (C) domains and escorts SREBP from the endoplasmic reticulum to the Golgi upon sterol depletion. A conserved pathway, with the homologues of SREBP and SCAP being Sre1 and Scp1, was identified in fission yeast Schizosaccharomyces pombe. Here we report the in vitro reconstitution of the complex between the C domains of Sre1 and Scp1 as well as the crystal structure of the WD40 domain of Scp1 at 2.1 Å resolution. The structure reveals an eight-bladed β-propeller that exhibits several distinctive features from a canonical WD40 repeat domain. Structural and biochemical characterization led to the identification of two Scp1 elements that are involved in Sre1 recognition, an Arg/Lys-enriched surface patch on the top face of the WD40 propeller and a 30-residue C-terminal tail. The structural and biochemical findings were corroborated by in vivo examinations. These studies serve as a framework for the mechanistic understanding and further functional characterization of the SREBP and SCAP proteins in fission yeast and higher organisms.  相似文献   
986.
Theory assumes that postcopulatory sexual selection favors increased investment in testes size because greater numbers of sperm within the ejaculate increase the chance of success in sperm competition, and larger testes are able to produce more sperm. However, changes in the organization of the testes tissue may also affect sperm production rates. Indeed, recent comparative analyses suggest that sperm competition selects for greater proportions of sperm‐producing tissue within the testes. Here, we explicitly test this hypothesis using the powerful technique of experimental evolution. We allowed house mice (Mus domesticus) to evolve via monogamy or polygamy in six replicate populations across 24 generations. We then used histology and image analysis to quantify the proportion of sperm‐producing tissue (seminiferous tubules) within the testes of males. Our results show that males that had evolved with sperm competition had testes with a higher proportion of seminiferous tubules compared with males that had evolved under monogamy. Previously, it had been shown that males from the polygamous populations produced greater numbers of sperm in the absence of changes in testes size. We thus provide evidence that sperm competition selects for an increase in the density of sperm‐producing tissue, and consequently increased testicular efficiency.  相似文献   
987.
988.
989.
Defects in mitochondrial fusion or fission are associated with many pathologies, raising the hope that pharmacological manipulation of mitochondrial dynamics may have therapeutic benefit. This approach assumes that organ physiology can be restored by rebalancing mitochondrial dynamics, but this concept remains to be validated. We addressed this issue by analyzing mice deficient in Mff, a protein important for mitochondrial fission. Mff mutant mice die at 13 wk as a result of severe dilated cardiomyopathy leading to heart failure. Mutant tissue showed reduced mitochondrial density and respiratory chain activity along with increased mitophagy. Remarkably, concomitant deletion of the mitochondrial fusion gene Mfn1 completely rescued heart dysfunction, life span, and respiratory chain function. Our results show for the first time that retuning the balance of mitochondrial fusion and fission can restore tissue integrity and mitochondrial physiology at the whole-organ level. Examination of liver, testis, and cerebellum suggest, however, that the precise balance point of fusion and fission is cell type specific.  相似文献   
990.
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