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   880706篇
  免费   87783篇
  国内免费   485篇
  968974篇
  2018年   8103篇
  2016年   11158篇
  2015年   14869篇
  2014年   17550篇
  2013年   24756篇
  2012年   27736篇
  2011年   28236篇
  2010年   19375篇
  2009年   17948篇
  2008年   25237篇
  2007年   26283篇
  2006年   24592篇
  2005年   23629篇
  2004年   23513篇
  2003年   22616篇
  2002年   22064篇
  2001年   38003篇
  2000年   38400篇
  1999年   30593篇
  1998年   11121篇
  1997年   11574篇
  1996年   10781篇
  1995年   10063篇
  1994年   9854篇
  1993年   9756篇
  1992年   25200篇
  1991年   24638篇
  1990年   24198篇
  1989年   23439篇
  1988年   22025篇
  1987年   20747篇
  1986年   19358篇
  1985年   19238篇
  1984年   16151篇
  1983年   13582篇
  1982年   10465篇
  1981年   9323篇
  1980年   8908篇
  1979年   15022篇
  1978年   11670篇
  1977年   10639篇
  1976年   9864篇
  1975年   10869篇
  1974年   11781篇
  1973年   11724篇
  1972年   10673篇
  1971年   9764篇
  1970年   8474篇
  1969年   8228篇
  1968年   7656篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
31.
32.
33.
1. In a manner similar to that of the sartorius muscle, the isolated kidney of the frog can accumulate K against a gradient to upwards of three times its normal concentration. 2. The K-accumulating region is identified as the proximal tubule, which in the isolated tissue immersed over 24 hours in the cold (2–3°C.) amounts to about 90 per cent of the nephron minus the glomerulus. In the fresh tissue it constitutes about 70 per cent. The cells of the proximal tubule are impermeable to Na, but freely permeable to K and Cl. 3. The distal tubule in the isolated kidney does not accumulate K over the external concentration. The cells are permeable to Na which they actively extrude. This extrusion of Na goes parallel with a loss of osmotically associated water amounting to about 15 per cent of the weight of the fresh kidney, but varying somewhat with the conditions. 4. The accumulation of K in the proximal tubules is in accordance with the equations established for the sartorius muscle, and, as theoretically expected, there is no volume increase (but rather a small decrease) with the large accumulations, when the external Na concentration is maintained throughout. 5. With K accumulation in isotonic mixtures large volume changes occur as K is progressively substituted for Na. Over the range of external K concentration of 10 to 100 mM per litre the weight of the whole kidney changes to 2.5 times and the water of the cells of the proximal tubules increases to over four times. Up to an external K value of 90 mM per litre the mean weight of the kidney shows a linear relation when plotted against the reciprocal of the Na concentration plus the small glucose and Ca concentration. This relation is interpreted theoretically. 6. The effect of cyanide in the isotonic mixtures is to prevent the contraction of the distal tubules and to cause swelling of the same. It does not affect the volume, volume changes, or differential permeability of the proximal tubule. At the same time the membranes of the proximal tubule cells lose their characteristic permeability at a lower level of distension in the presence of cyanide. 7. The mean Na ratio for the kidney after 24 hours'' immersion in the cold is 0.26 ± 0.014 (giving standard deviation of mean). The ratio is defined as See PDF for Equation. For the fresh kidney the mean ratio is 0.39 ± 0.006. 8. The mean inulin ratio (28 observed in the cold) is 0.23 ± 0.012 and the same value for 10 observed at room temperature. At room temperature—2 hour immersion—the ratio is increased by cyanide to a mean of 0.32 ± 0.028, but only a slight increase is caused by cyanide in the cold. 9. The mean hemoglobin ratio after 24 hours'' immersion in the cold is 0.17 ± 0.004 and is unaffected by cyanide.  相似文献   
34.
Vitamin Content of Ingredients of Microbiological Culture Media   总被引:1,自引:0,他引:1  
  相似文献   
35.
36.
37.
38.
39.
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