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   6714篇
  免费   909篇
  国内免费   3篇
  7626篇
  2021年   90篇
  2020年   54篇
  2019年   80篇
  2018年   74篇
  2017年   90篇
  2016年   143篇
  2015年   225篇
  2014年   237篇
  2013年   332篇
  2012年   370篇
  2011年   371篇
  2010年   228篇
  2009年   185篇
  2008年   310篇
  2007年   284篇
  2006年   268篇
  2005年   244篇
  2004年   276篇
  2003年   213篇
  2002年   237篇
  2001年   186篇
  2000年   173篇
  1999年   164篇
  1998年   102篇
  1997年   88篇
  1996年   75篇
  1995年   83篇
  1994年   76篇
  1993年   79篇
  1992年   138篇
  1991年   127篇
  1990年   139篇
  1989年   142篇
  1988年   126篇
  1987年   121篇
  1986年   104篇
  1985年   75篇
  1984年   91篇
  1983年   81篇
  1982年   73篇
  1981年   61篇
  1979年   78篇
  1978年   55篇
  1977年   61篇
  1976年   60篇
  1975年   73篇
  1974年   58篇
  1973年   52篇
  1972年   54篇
  1971年   52篇
排序方式: 共有7626条查询结果,搜索用时 15 毫秒
71.
A protein present in the developing endosperm of maize (Zea mays L.) causes a loss of invertase activity under certain conditions of incubation. This protein, designated an inactivator, inactivates invertase I of maize even in the presence of other proteins. No inactivation of invertase II of maize or yeast invertase has been observed. The inactivator and invertase I are found only in the endosperm. The quantity of inactivator increases in the normal endosperm during development while invertase I activity decreases. However, the altered levels of invertase I activity in several endosperm mutant lines do not result from different quantities of inactivator. The inactivator can decrease invertase I activity during a preincubation period before addition of sucrose; inactivation is noncompetitive. Invertase I activity decreases curvilinearly with an increase in inactivator concentration. At high buffer concentrations or low inactivator concentrations in the reaction mixture, a latent period is observed when invertase I is not inactivated. Inactivation increases with an increase in temperature and a decrease in pH.  相似文献   
72.
73.
Livers from nonfasted rats were perfused in situ under conditions known from previous studies in this laboratory to increase or decrease overall endogenous proteolysis. At the termination of the experiments, lysosomal alterations were evaluated by the increase in free acid phosphatase or N-acetyl-β-D-glucosaminidase that occurred when tissue homogenates were subjected to osmotic shock in hypotonic sucrose. In control perfusions, osmotic sensitivity increased spontaneously over unperfused values, reaching maximum by 60 min or earlier. Additions of insulin, amino acid mixtures, or cycloheximide in amounts known to suppress proteolysis prevented this spontaneous perfusion effect or, when added at 60 min, rapidly reversed it. Glucagon alone during perfusion did not increase osmotic sensitivity further; however, stimulation with glucagon was observed when the perfusion effect was suppressed by insulin or cycloheximide. Anoxia, induced by gassing with nitrogen instead of oxygen, markedly reduced the perfusion effect and also doubled the amount of free acid phosphatase in the initial isotonic homogenates. Total acid phosphatase activities in the perfusion experiments were not significantly different from unperfused values and, with the exception of the anoxia perfusions, the amounts of free enzyme present in the initial isotonic sucrose homogenates did not change.  相似文献   
74.
75.
76.
77.
Summary 65Zn was infused at a constant rate for 10 days into a rat. Glutaraldehyde fixed, Epon-araldite embedded ultrathin sections of pancreatic tissue were coated with Ilford L4 emulsion and at 211 days exposure were developed. Silver grains were found over the zymogen granules and over the rough endoplasmic reticulum of exocrine cells. Islet tissue was not observed in these studies. The failure of other zinc localization methods to demonstrate zinc in acinar tissue is discussed as are some of the pitfalls of the autoradiographic method and suggestions for future improvement.Published with the approval of the Director of the Wisconsin Agricultural Experiment Station, Madison. Supported in part by USPHS Research Grant AM-05606 from the Nat. Institute of Arthritis and Metabolic Diseases.Supported by an NIH post-doctoral fellowship.  相似文献   
78.
79.
Summary The fine structure of ungerminated and aerobically germinated sporangiospores of Mucor rouxii was compared. The germination process may be divided into two stages: I, spherical growth; II, emergence of a germ tube. In both stages, germination is growth in its strictest sense with overall increases in cell organelles; e.g., the increase in mitochondria is commensurate with the overall increase in protoplasmic mass. Noticeable changes occurring during germination are the disappearance of electron-dense lipoid bodies, formation of a large central vacuole and, most strikingly, formation of a new cell wall. Unlike many other fungi, M. rouxii does not germinate by converting the spore wall into a vegetative wall. Instead, as in other Mucorales, a vegetative wall is formed de novo under the spore wall during germination stage I. This new wall grows out, rupturing the spore wall, to become the germ tube wall. Associated with the apical wall of the germ tube is an apical corpuscle previously described. The vegetative wall exhibits a nonlayered, uniformly microfibrillar appearance in marked distinction to the spore wall which is triple-layered, with two thin electron dense outer layers, and a thick transparent inner stratum. The lack of continuity between the spore and vegetative walls is correlated with marked differences in wall chemistry previously reported. A separate new wall is also formed under the spore wall during anaerobic germination leading to yeast cell formation. On the other hand, in the development of one vegetative cell from another, such as in the formation of hyphae from yeast cells, the cell wall is structurally continuous. This continuity is correlated with a similarity in chemical composition of the cell wall reported earlier.  相似文献   
80.
Control of glycogen levels in brain   总被引:12,自引:5,他引:7  
Abstract— Prolonged (6 hr) anaesthesia with phenobarbital in mice or rats results in a doubling or tripling of brain glycogen. Increases were also observed if high levels of plasma glucose were maintained for 6 hr. In alloxan diabetes brain glycogen was not elevated in spite of the high plasma glucose concentrations. However, administration of insulin to such diabetic animals, together with enough glucose to maintain high plasma levels, resulted in at least a doubling of brain glycogen in 6 hr. Phenobarbital can still increase brain glycogen in diabetic animals. In all of the conditions associated with increased glycogen deposition, increases were found in the ratio of brain glucose to plasma glucose. Cerebral glucose-6-P levels were also increased whereas there were no substantial changes in levels of UDP-glucose or glucose-1,6-diphosphate.  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