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   1621505篇
  免费   152597篇
  国内免费   1719篇
  2021年   18297篇
  2019年   16306篇
  2018年   19179篇
  2017年   18026篇
  2016年   29270篇
  2015年   43308篇
  2014年   51441篇
  2013年   77642篇
  2012年   47069篇
  2011年   37994篇
  2010年   47089篇
  2009年   47316篇
  2008年   34804篇
  2007年   33428篇
  2006年   36670篇
  2005年   37716篇
  2004年   36835篇
  2003年   34121篇
  2002年   31968篇
  2001年   51782篇
  2000年   49622篇
  1999年   44883篇
  1998年   27567篇
  1997年   27384篇
  1996年   26547篇
  1995年   24716篇
  1994年   24332篇
  1993年   23549篇
  1992年   37799篇
  1991年   35879篇
  1990年   34482篇
  1989年   34924篇
  1988年   32171篇
  1987年   30199篇
  1986年   28579篇
  1985年   29988篇
  1984年   28126篇
  1983年   24339篇
  1982年   23102篇
  1981年   21969篇
  1980年   20464篇
  1979年   23754篇
  1978年   21254篇
  1977年   20113篇
  1976年   18836篇
  1975年   18907篇
  1974年   19680篇
  1973年   19952篇
  1972年   17108篇
  1971年   15626篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
981.
The Oral History and Literature of the Wolof People of Waalo, Northern Senegal. Samba Diop. Lewiston, Canada; Edwin Mellen Press, 1995. 389 pp.  相似文献   
982.
983.
984.
985.
986.
987.
The muscle phase of Trichinella spiralis and of Trichinella sp. isolated in the Arctic was compared in experimental and wild animals. Reproductive capacity indices (RCI) of the Trichinella sp. isolate were significantly lower in laboratory rodents but were similar to T. spiralis in wild rodents. Sprague-Dawley rats were the most refractory to the Trichinella sp. isolate of all laboratory rodents. Outbred strains of mice were more susceptible to both T. spiralis and the Trichinella sp. isolate than inbred strains of mice. T. spiralis muscle larvae survived longer in mice and the survival of both T. spiralis and the Trichinella sp. isolate larvae was higher in female mice. While single pair interbreeding experiments showed reproductive isolation between T. spiralis and the Trichinella sp. isolate, multiple pair and transplant breeding experiments showed reproductive compatibility. Male and female infective larvae of T. spiralis and the Trichinella sp. isolate differed morphometrically, but a convergence in size of worms was observed after prolonged passages of the parasites in mice. Passaging history of the isolate and host species was found to have a significant effect on Trichinella morphology. It is proposed that the Trichinella sp. isolate is a physiological variant of T. spiralis and not a distinct species.  相似文献   
988.
Editorial     
  相似文献   
989.
990.
Invasion of eukaryotic target cells by pathogenic bacteria requires extensive remodelling of the membrane and actin cytoskeleton. Here we show that the remodelling process is regulated by the ubiquitin C‐terminal hydrolase UCH‐L1 that promotes the invasion of epithelial cells by Listeria monocytogenes and Salmonella enterica. Knockdown of UCH‐L1 reduced the uptake of both bacteria, while expression of the catalytically active enzyme promoted efficient internalization in the UCH‐L1‐negative HeLa cell line. The entry of L. monocytogenes involves binding to the receptor tyrosine kinase Met, which leads to receptor phosphorylation and ubiquitination. UCH‐L1 controls the early membrane‐associated events of this triggering cascade since knockdown was associated with altered phosphorylation of the c‐cbl docking site on Tyr1003, reduced ubiquitination of the receptor and altered activation of downstream ERK1/2‐ and AKT‐dependent signalling in response to the natural ligand Hepatocyte Growth Factor (HGF). The regulation of cytoskeleton dynamics was further confirmed by the induction of actin stress fibres in HeLa expressing the active enzyme but not the catalytic mutant UCH‐L1C90S. These findings highlight a previously unrecognized involvement of the ubiquitin cycle in bacterial entry. UCH‐L1 is highly expressed in malignant cells that may therefore be particularly susceptible to invasion by bacteria‐based drug delivery systems.  相似文献   
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