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   29687篇
  免费   2603篇
  国内免费   3182篇
  35472篇
  2024年   79篇
  2023年   365篇
  2022年   782篇
  2021年   1226篇
  2020年   968篇
  2019年   1123篇
  2018年   1078篇
  2017年   892篇
  2016年   1147篇
  2015年   1788篇
  2014年   2087篇
  2013年   2202篇
  2012年   2794篇
  2011年   2372篇
  2010年   1661篇
  2009年   1476篇
  2008年   1751篇
  2007年   1600篇
  2006年   1457篇
  2005年   1334篇
  2004年   1181篇
  2003年   1060篇
  2002年   923篇
  2001年   654篇
  2000年   534篇
  1999年   503篇
  1998年   342篇
  1997年   259篇
  1996年   234篇
  1995年   205篇
  1994年   195篇
  1993年   135篇
  1992年   160篇
  1991年   133篇
  1990年   116篇
  1989年   115篇
  1988年   76篇
  1987年   90篇
  1986年   70篇
  1985年   38篇
  1984年   25篇
  1983年   41篇
  1982年   19篇
  1981年   19篇
  1980年   12篇
  1979年   20篇
  1978年   14篇
  1977年   14篇
  1972年   13篇
  1970年   13篇
排序方式: 共有10000条查询结果,搜索用时 7 毫秒
11.
12.
Malocclusions of the premolar and molar teeth of inbred Strain 2/N and Strain 13/N and outbred Dunkin-Harley guinea pigs were examined. A higher incidence of malocclusion observed in the inbred strains suggested a genetic basis for the disorder.  相似文献   
13.
14.
谭清苏铁性别相关的RAPD标记研究   总被引:1,自引:0,他引:1  
以谭清苏铁(Cycas tanqingii D.Y.Wang)雌雄植株半年生羽叶为材料,用优化的CTAB法分别提取其全基因组DNA,进行RAPD单因子梯度实验和正交实验以优化扩增条件。应用160个RAPD随机引物检测基因组DNA,雌雄植株均扩增出1450多条带,其中引物S0465扩增出与谭清苏铁雌株高度相关的RAPD标记,其大小约为500bp,该标记与雄株没有关联。  相似文献   
15.
Seasonal shifts of dissolved inorganic nitrogen (DIN) and the dynamics of microbial communities for nitrogen transformation were investigated in the water column of Chesapeake Bay. The relative abundance of nitrogen over phosphorus (N*) showed a strong seasonal and spatial pattern: gradually decreased from upstream to downstream; high in winter and low in summer. Because the phosphorus concentration remained relatively stable, the spatiotemporal pattern of N* implied that a substantial fraction of DIN was removed in the bay, especially in summer. Correlation analyses indicated the functional microbial communities and environmental variables, such as temperature, dissolved oxygen, salinity, played important roles for connecting the seasonal variation of N*. Among them, temperature was the trigger factor. High temperature in the summer induced the growth of functional microbes, which subsequently consumed a large portion of DIN inputted from the tributaries and reduced the N*. The current study provided the relative importance of microbial communities and environmental variables in driving the DIN loss in the bay.  相似文献   
16.
17.
The underlying ionic mechanisms of ischemic-induced arrhythmia were studied by the computer simulation method. To approximate the real situation, ischemic cells were simulated by considering the three major component conditions of acute ischemia (elevated extracellular K(+) concentration, acidosis and anoxia) at the level of ionic currents and ionic concentrations, and a round ischemic zone was introduced into a homogeneous healthy sheet to avoid sharp angle of the ischemic tissue. The constructed models were solved using the operator splitting and adaptive time step methods, and the perturbation finite difference (PFD) scheme was first used to integrate the partial differential equations (PDEs) in the model. The numerical experiments showed that the action potential durations (APDs) of ischemic cells did not exhibited rate adaptation characteristic, resulting in flattening of the APD restitution curve. With reduction of sodium channel availability and long recovery of excitability, refractory period of the ischemic tissue was significantly prolonged, and could no longer be considered as same as APD. Slope of the conduction velocity (CV) restitution curve increased both in normal and ischemic region when pacing cycle length (PCL) was short, and refractory period dispersion increased with shortening of PCL as well. Therefore, dynamic changes of CV and dispersion of refractory period rather than APD were suggested to be the fundamental mechanisms of arrhythmia in regional ischemic myocardium.  相似文献   
18.
19.
20.
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