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   7056篇
  免费   662篇
  国内免费   2篇
  2021年   65篇
  2020年   52篇
  2019年   72篇
  2018年   89篇
  2017年   78篇
  2016年   111篇
  2015年   182篇
  2014年   238篇
  2013年   269篇
  2012年   332篇
  2011年   348篇
  2010年   221篇
  2009年   198篇
  2008年   299篇
  2007年   300篇
  2006年   316篇
  2005年   267篇
  2004年   318篇
  2003年   301篇
  2002年   286篇
  2001年   148篇
  2000年   122篇
  1999年   137篇
  1998年   124篇
  1997年   71篇
  1996年   99篇
  1995年   79篇
  1994年   83篇
  1993年   83篇
  1992年   86篇
  1991年   101篇
  1990年   96篇
  1989年   66篇
  1988年   103篇
  1987年   65篇
  1986年   60篇
  1985年   89篇
  1984年   74篇
  1983年   76篇
  1982年   77篇
  1981年   64篇
  1980年   64篇
  1979年   53篇
  1978年   47篇
  1977年   58篇
  1976年   51篇
  1975年   46篇
  1974年   62篇
  1972年   51篇
  1968年   45篇
排序方式: 共有7720条查询结果,搜索用时 250 毫秒
1.
2.
3.
Iodide administered in the drinking water for 5–7 days increased the activity of estradiol-induced uterine peroxidase in the immature rat. This effect was specific for iodide and could not be mimicked by chloride, bromide, thiocyanate, perchlorate or iodate. Sodium iodide also increased peroxidase activity in the parotid gland but had no effect on glucose-6-phosphate dehydrogenase in the uterus, thyroid or parotid even though estradiol produced a 2-fold increase in the activity of this enzyme in the uterus. 125I was taken up more readily by the uterus than by muscle but this process was not influenced by prior treatment of the animals with estrogen. The in vitro effect of sulfhydryl reagents on uterine peroxidase was also investigated and proposals made for possible mechanisms of action of iodide on this enzyme in the intact animal.  相似文献   
4.
Recent studies have discovered strong differences between the dynamics of nucleic acids (RNA and DNA) and proteins, especially at low hydration and low temperatures. This difference is caused primarily by dynamics of methyl groups that are abundant in proteins, but are absent or very rare in RNA and DNA. In this paper, we present a hypothesis regarding the role of methyl groups as intrinsic plasticizers in proteins and their evolutionary selection to facilitate protein dynamics and activity. We demonstrate the profound effect methyl groups have on protein dynamics relative to nucleic acid dynamics, and note the apparent correlation of methyl group content in protein classes and their need for molecular flexibility. Moreover, we note the fastest methyl groups of some enzymes appear around dynamical centers such as hinges or active sites. Methyl groups are also of tremendous importance from a hydrophobicity/folding/entropy perspective. These significant roles, however, complement our hypothesis rather than preclude the recognition of methyl groups in the dynamics and evolution of biomolecules.  相似文献   
5.
6.
7.
The cause of the pregnancy condition preeclampsia (PE) is thought to be endothelial dysfunction caused by oxidative stress. As abnormal glucose tolerance has also been associated with PE, we use a fluorinated-mimic of this metabolite to establish whether any oxidative damage to lipids and proteins in the erythrocyte membrane has increased cell membrane permeability. Data were acquired using 19F Dynamic-NMR (DNMR) to measure exchange of 3-fluoro-3-deoxyglucose (3-FDG) across the membrane of erythrocytes from 10 pregnant women (5 healthy control women, and 5 from women suffering from PE). Magnetisation transfer was measured using the 1D selective inversion and 2D EXSY pulse sequences, over a range of time delays. Integrated intensities from these experiments were used in matrix diagonalisation to estimate the values of the rate constants of exchange and membrane permeability. No significant differences were observed for the rate of exchange of 3-FDG and membrane permeability between healthy pregnant women and those suffering from PE, leading us to conclude that no oxidative damage had occurred at this carrier-protein site in the membrane.  相似文献   
8.
9.
10.
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