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   1442659篇
  免费   117562篇
  国内免费   3578篇
耳鼻咽喉   19079篇
儿科学   47374篇
妇产科学   41778篇
基础医学   204216篇
口腔科学   38295篇
临床医学   129941篇
内科学   290795篇
皮肤病学   34097篇
神经病学   120061篇
特种医学   54773篇
外国民族医学   467篇
外科学   216150篇
综合类   33255篇
现状与发展   5篇
一般理论   529篇
预防医学   112872篇
眼科学   32445篇
药学   100563篇
  1篇
中国医学   3382篇
肿瘤学   83721篇
  2021年   11558篇
  2019年   12325篇
  2018年   17617篇
  2017年   13567篇
  2016年   15360篇
  2015年   17121篇
  2014年   24100篇
  2013年   35473篇
  2012年   47296篇
  2011年   49861篇
  2010年   29698篇
  2009年   28614篇
  2008年   46024篇
  2007年   48568篇
  2006年   49261篇
  2005年   47624篇
  2004年   45419篇
  2003年   43132篇
  2002年   41564篇
  2001年   73344篇
  2000年   74782篇
  1999年   61926篇
  1998年   17490篇
  1997年   15887篇
  1996年   16073篇
  1995年   15235篇
  1994年   13711篇
  1993年   12865篇
  1992年   46065篇
  1991年   43693篇
  1990年   41633篇
  1989年   39732篇
  1988年   36349篇
  1987年   35498篇
  1986年   33001篇
  1985年   31426篇
  1984年   23988篇
  1983年   20172篇
  1982年   12389篇
  1981年   10932篇
  1979年   20776篇
  1978年   14667篇
  1977年   12176篇
  1976年   11450篇
  1975年   11689篇
  1974年   14059篇
  1973年   13599篇
  1972年   12699篇
  1971年   11514篇
  1970年   10952篇
排序方式: 共有10000条查询结果,搜索用时 0 毫秒
31.
32.
33.
34.
35.
36.
37.
Cutaneous plasmacytosis is a rare disorder characterized by a benign proliferation of mature plasma cells that appears as multiple dark-brown to purplish skin lesions, often associated with polyclonal hypergammaglobulinaemia. We present the case of a 55-year-old Caucasian man who suffered from a cutaneous plasmacytosis associated with two different carcinomas. Cutaneous plasmacytosis seems to be a reactive process because most cases reported are not associated with any apparent underlying disease. Nevertheless, because few reported cases were associated with malignancies, screening of additional neoplasms would be justified.  相似文献   
38.
39.
Continual loading and articulation cycles undergone by metallic (e.g., titanium) alloy arthroplasty prostheses lead to liberation of a large number of metallic debris particulates, which have long been implicated as a primary cause of periprosthetic osteolysis and postarthroplasty aseptic implant loosening. Long-term stability of total joint replacement prostheses relies on proper integration between implant biomaterial and osseous tissue, and factors that interfere with this integration are likely to cause osteolysis. Because multipotent mesenchymal stem cells (MSCs) located adjacent to the implant have an osteoprogenitor function and are critical contributors to osseous tissue integrity, when their functions or activities are compromised, osteolysis will most likely occur. To date, it is not certain or sufficiently confirmed whether MSCs endocytose titanium particles, and if so, whether particulate endocytosis has any effect on cellular responses to wear debris. This study seeks to clarify the phenomenon of titanium endocytosis by human MSCs (hMSCs), and investigates the influence of endocytosis on their activities. hMSCs incubated with commercially pure titanium particles exhibited internalized particles, as observed by scanning electron microscopy and confocal laser scanning microscopy, with time-dependent reduction in the number of extracellular particles. Particulate endocytosis was associated with reduced rates of cellular proliferation and cell-substrate adhesion, suppressed osteogenic differentiation, and increased rate of apoptosis. These cellular effects of exposure to titanium particles were reduced when endocytosis was inhibited by treatment with cytochalasin D, and no significant effect was seen when hMSCs were treated only with conditioned medium obtained from particulate-treated cells. These findings strongly suggest that the biological responses of hMSCs to wear debris are triggered primarily by the direct endocytosis of titanium particulates, and not mediated by secreted soluble factors. In this manner, therapeutical approaches that suppress particle endocytosis could reduce the bioreactivity of hMSCs to particulates, and enhance long-term orthopedic implant prognosis by minimizing wear-debris periprosthethic osteolysis.  相似文献   
40.
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