首页 | 官方网站   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   1259213篇
  免费   96518篇
  国内免费   1564篇
医药卫生   1357295篇
  2018年   13534篇
  2017年   10392篇
  2016年   11326篇
  2015年   13080篇
  2014年   18003篇
  2013年   27480篇
  2012年   37584篇
  2011年   39973篇
  2010年   23056篇
  2009年   22256篇
  2008年   37756篇
  2007年   40385篇
  2006年   39971篇
  2005年   39102篇
  2004年   37545篇
  2003年   35954篇
  2002年   34867篇
  2001年   56029篇
  2000年   57042篇
  1999年   48096篇
  1998年   13395篇
  1997年   12222篇
  1996年   12643篇
  1995年   11914篇
  1994年   11108篇
  1993年   10399篇
  1992年   38199篇
  1991年   37672篇
  1990年   36446篇
  1989年   35257篇
  1988年   32652篇
  1987年   32005篇
  1986年   30496篇
  1985年   28760篇
  1984年   21901篇
  1983年   19127篇
  1982年   11302篇
  1981年   10255篇
  1979年   20878篇
  1978年   15355篇
  1977年   12719篇
  1976年   11780篇
  1975年   12771篇
  1974年   15551篇
  1973年   15323篇
  1972年   14497篇
  1971年   13539篇
  1970年   12757篇
  1969年   12048篇
  1968年   11214篇
排序方式: 共有10000条查询结果,搜索用时 31 毫秒
61.
62.
European Journal of Orthopaedic Surgery & Traumatology - The goals of this study were to compare patient satisfaction and wound-related complications in patients receiving 2-octyl cyanoacrylate...  相似文献   
63.
64.
65.
66.
67.
68.
DNA methylation at CpG dinucleotides is an important epigenetic regulator common to virtually all mammalian cell types, but recent evidence indicates that during early postnatal development neuronal genomes also accumulate uniquely high levels of two alternative forms of methylation, non-CpG methylation and hydroxymethylation. Here we discuss the distinct landscape of DNA methylation in neurons, how it is established, and how it might affect the binding and function of protein readers of DNA methylation. We review studies of one critical reader of DNA methylation in the brain, the Rett syndrome protein methyl CpG-binding protein 2 (MeCP2), and discuss how differential binding affinity of MeCP2 for non-CpG and hydroxymethylation may affect the function of this methyl-binding protein in the nervous system.  相似文献   
69.
70.
The progress of modern medicine would be impossible without the use of general anesthetics (GAs). Despite advancements in refining anesthesia approaches, the effects of GAs are not fully reversible upon GA withdrawal. Neurocognitive deficiencies attributed to GA exposure may persist in neonates or endure for weeks to years in the elderly. Human studies on the mechanisms of the long-term adverse effects of GAs are needed to improve the safety of general anesthesia but they are hampered not only by ethical limitations specific to human research, but also by a lack of specific biological markers that can be used in human studies to safely and objectively study such effects. The latter can primarily be attributed to an insufficient understanding of the full range of the biological effects induced by GAs and the molecular mechanisms mediating such effects even in rodents, which are far more extensively studied than any other species. Our most recent experimental findings in rodents suggest that GAs may adversely affect many more people than is currently anticipated. Specifically, we have shown that anesthesia with the commonly used GA sevoflurane induces in exposed animals not only neuroendocrine abnormalities (somatic effects), but also epigenetic reprogramming of germ cells (germ cell effects). The latter may pass the neurobehavioral effects of parental sevoflurane exposure to the offspring, who may be affected even at levels of anesthesia that are not harmful to the exposed parents. The large number of patients who require general anesthesia, the even larger number of their future unexposed offspring whose health may be affected, and a growing number of neurodevelopmental disorders of unknown etiology underscore the translational importance of investigating the intergenerational effects of GAs. In this mini review, we discuss emerging experimental findings on neuroendocrine, epigenetic, and intergenerational effects of GAs.  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-23

京公网安备 11010802026262号