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   958431篇
  免费   94734篇
  国内免费   316篇
  2018年   10276篇
  2017年   9636篇
  2016年   13553篇
  2015年   17045篇
  2014年   20221篇
  2013年   28883篇
  2012年   32594篇
  2011年   33285篇
  2010年   22624篇
  2009年   20967篇
  2008年   29351篇
  2007年   30434篇
  2006年   28614篇
  2005年   27743篇
  2004年   27660篇
  2003年   26238篇
  2002年   25551篇
  2001年   39918篇
  2000年   39367篇
  1999年   31832篇
  1998年   11783篇
  1997年   11807篇
  1996年   11291篇
  1995年   10371篇
  1994年   10028篇
  1993年   9993篇
  1992年   25720篇
  1991年   25359篇
  1990年   24681篇
  1989年   24194篇
  1988年   22286篇
  1987年   21302篇
  1986年   19788篇
  1985年   19893篇
  1984年   16396篇
  1983年   14116篇
  1982年   10656篇
  1981年   9628篇
  1980年   9018篇
  1979年   15215篇
  1978年   12014篇
  1977年   10867篇
  1976年   10441篇
  1975年   11698篇
  1974年   12594篇
  1973年   12531篇
  1972年   11354篇
  1971年   10268篇
  1970年   8905篇
  1969年   8815篇
排序方式: 共有10000条查询结果,搜索用时 12 毫秒
291.
292.
293.
294.
295.
Myoglobin (Mb) is the classic vertebrate oxygen-binding protein present in aerobic striated muscles. It functions principally in oxygen delivery and provides muscle with its characteristic red colour. Members of the Antarctic icefish family (Channichthyidae) are widely thought to be extraordinary for lacking cardiac Mb expression, a fact that has been attributed to their low metabolic rate and unusual evolutionary history. Here, we report that cardiac Mb deficit, associated with pale heart colour, has evolved repeatedly during teleost evolution. This trait affects both gill- and air-breathing species from temperate to tropical habitats across a full range of salinities. Cardiac Mb deficit results from total pseudogenization in three-spined stickleback and is associated with a massive reduction in mRNA level in two species that evidently retain functional Mb. The results suggest that near or complete absence of Mb-assisted oxygen delivery to heart muscle is a common facet of teleost biodiversity, even affecting lineages with notable oxygen demands. We suggest that Mb deficit may affect how different teleost species deal with increased tissue oxygen demands arising under climate change.  相似文献   
296.
Selective diapedesis of Th1 cells induced by endothelial cell RANTES.   总被引:16,自引:0,他引:16  
Differentiated CD4 T cells can be divided into Th1 and Th2 types based on the cytokines they produce. Differential expression of chemokine receptors on either the Th1-type or the Th2-type cell suggests that Th1-type and Th2-type cells differ not only in cytokine production but also in their migratory capacity. Stimulation of endothelial cells with IFN-gamma selectively enhanced transmigration of Th1-type cells, but not Th2-type cells, in a transendothelial migration assay. Enhanced transmigration of Th1-type cells was dependent on the chemokine RANTES produced by endothelial cells, as indicated by the findings that Ab neutralizing RANTES, or Ab to its receptor CCR5, inhibited transmigration. Neutralizing Ab to chemokines macrophage-inflammatory protein-1alpha or monocyte chemotactic protein-1 did not inhibit Th1 selective migration. Whereas anti-CD18 and anti-CD54 blocked basal levels of Th1-type cell adherence to endothelial cells and also inhibited transmigration, anti-RANTES blocked only transmigration, indicating that RANTES appeared to induce transmigration of adherent T cells. RANTES seemed to promote diapedesis of adherent Th1-type cells by augmenting pseudopod formation in conjunction with actin rearrangement by a pathway that was sensitive to the phosphoinositol 3-kinase inhibitor wortmannin and to the Rho GTP-binding protein inhibitor, epidermal cell differentiation inhibitor. Thus, enhancement of Th1-type selective migration appeared to be responsible for the diapedesis induced by interaction between CCR5 on Th1-type cells and RANTES produced by endothelial cells. Further evidence that CCR5 and RANTES play a modulatory role in Th1-type selective migration derives from the abrogation of this migration by anti-RANTES and anti-CCR5 Abs.  相似文献   
297.
298.
299.
300.
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