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   82267篇
  免费   7339篇
  国内免费   5485篇
耳鼻咽喉   845篇
儿科学   887篇
妇产科学   1229篇
基础医学   10596篇
口腔科学   1408篇
临床医学   10963篇
内科学   12353篇
皮肤病学   1031篇
神经病学   4516篇
特种医学   3088篇
外国民族医学   53篇
外科学   8569篇
综合类   10878篇
现状与发展   21篇
一般理论   22篇
预防医学   5143篇
眼科学   2985篇
药学   8507篇
  67篇
中国医学   4199篇
肿瘤学   7731篇
  2024年   262篇
  2023年   1228篇
  2022年   3208篇
  2021年   4124篇
  2020年   3035篇
  2019年   2904篇
  2018年   3083篇
  2017年   2556篇
  2016年   2647篇
  2015年   3817篇
  2014年   4748篇
  2013年   4184篇
  2012年   6194篇
  2011年   6645篇
  2010年   4110篇
  2009年   3099篇
  2008年   4297篇
  2007年   4157篇
  2006年   4266篇
  2005年   4094篇
  2004年   2781篇
  2003年   2546篇
  2002年   2092篇
  2001年   1792篇
  2000年   1778篇
  1999年   2061篇
  1998年   1299篇
  1997年   1270篇
  1996年   957篇
  1995年   906篇
  1994年   765篇
  1993年   483篇
  1992年   597篇
  1991年   498篇
  1990年   471篇
  1989年   412篇
  1988年   371篇
  1987年   301篇
  1986年   248篇
  1985年   210篇
  1984年   130篇
  1983年   86篇
  1982年   42篇
  1981年   51篇
  1980年   29篇
  1979年   63篇
  1978年   22篇
  1974年   27篇
  1973年   18篇
  1968年   16篇
排序方式: 共有10000条查询结果,搜索用时 0 毫秒
1.
2.
3.
4.
5.
6.
7.
1. To investigate Genkwa Flos hepatotoxicity, a cell metabolomics strategy combined with serum pharmacology was performed on human HL-7702 liver cells in this study.

2. Firstly, cell viability and biochemical indicators were determined and the cell morphology was observed to confirm the cell injury and develop a cell hepatotoxicity model. Then, with the help of cell metabolomics based on UPLC-MS, the Genkwa Flos group samples were completely separated from the blank group samples in the score plots and seven upregulated as well as two down-regulated putative biomarkers in the loading plot were identified and confirmed. Besides, two signal molecules and four enzymes involved in biosynthesis pathway of lysophosphatidylcholine and the sphingosine kinase/sphingosine-1-phosphate pathway were determined to investigate the relationship between Genkwa Flos hepatotoxicity and these two classic pathways. Finally, the metabolic pathways related to specific biomarkers and two classic metabolic pathways were analyzed to explain the possible mechanism of Genkwa Flos hepatotoxicity.

3. Based on the results, lipid peroxidation and oxidative stress, phospholipase A2/lysophosphatidylcholine pathway, the disturbance of sphingosine-1-phosphate metabolic profile centered on sphingosine kinase/sphingosine-1-phosphate pathway and fatty acid metabolism might be critical participators in the progression of liver injury induced by Genkwa Flos.  相似文献   

8.
9.
10.
Ferroptosis is an iron-dependent novel cell death pathway. Deferoxamine, a ferroptosis inhibitor, has been reported to promote spinal cord injury repair. It has yet to be clarified whether ferroptosis inhibition represents the mechanism of action of Deferoxamine on spinal cord injury recovery. A rat model of Deferoxamine at thoracic 10 segment was established using a modified Allen's method. Ninety 8-week-old female Wistar rats were used. Rats in the Deferoxamine group were intraperitoneally injected with 100 mg/kg Deferoxamine 30 minutes before injury. Simultaneously, the Sham and Deferoxamine groups served as controls. Drug administration was conducted for 7 consecutive days. The results were as follows:(1) Electron microscopy revealed shrunken mitochondria in the spinal cord injury group.(2) The Basso, Beattie and Bresnahan locomotor rating score showed that recovery of the hindlimb was remarkably better in the Deferoxamine group than in the spinal cord injury group.(3) The iron concentration was lower in the Deferoxamine group than in the spinal cord injury group after injury.(4) Western blot assay revealed that, compared with the spinal cord injury group, GPX4, xCT, and glutathione expression was markedly increased in the Deferoxamine group.(5) Real-time polymerase chain reaction revealed that, compared with the Deferoxamine group, mRNA levels of ferroptosis-related genes Acyl-CoA synthetase family member 2(ACSF2) and iron-responsive element-binding protein 2(IREB2) were up-regulated in the Deferoxamine group.(6) Deferoxamine increased survival of neurons and inhibited gliosis. These findings confirm that Deferoxamine can repair spinal cord injury by inhibiting ferroptosis. Targeting ferroptosis is therefore a promising therapeutic approach for spinal cord injury.  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