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   11022篇
  免费   926篇
  国内免费   737篇
  2024年   3篇
  2023年   184篇
  2022年   152篇
  2021年   603篇
  2020年   395篇
  2019年   512篇
  2018年   535篇
  2017年   341篇
  2016年   508篇
  2015年   710篇
  2014年   792篇
  2013年   914篇
  2012年   1067篇
  2011年   928篇
  2010年   571篇
  2009年   495篇
  2008年   533篇
  2007年   492篇
  2006年   427篇
  2005年   361篇
  2004年   302篇
  2003年   225篇
  2002年   187篇
  2001年   202篇
  2000年   170篇
  1999年   174篇
  1998年   101篇
  1997年   123篇
  1996年   100篇
  1995年   87篇
  1994年   91篇
  1993年   48篇
  1992年   74篇
  1991年   55篇
  1990年   44篇
  1989年   46篇
  1988年   38篇
  1987年   27篇
  1986年   19篇
  1985年   22篇
  1984年   12篇
  1983年   9篇
  1982年   2篇
  1981年   2篇
  1980年   1篇
  1979年   1篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
11.
12.
Graft-versus-host disease (GVHD) induced by host antigen-presenting cells (APCs) and donor-derived T cells remains the major limitation of allogeneic bone marrow transplantation (allo-BMT). Notch signaling pathway is a highly conserved cell-cell communication that is important in T cell development. Recently, Notch signaling pathway is reported to be involved in regulating GVHD. To investigate the role of Notch inhibition in modulating GVHD, we established MHC-mismatched murine allo-BMT model. We found that inhibition of Notch signaling pathway by γ-secretase inhibitor in vivo could reduce aGVHD, which was shown by the onset time of aGVHD, body weight, clinical aGVHD scores, pathology aGVHD scores, and survival. Inhibition of Notch signaling pathway by DAPT ex vivo only reduced pathology aGVHD scores in the liver and intestine and had no impact on the onset time and clinical aGVHD scores. We investigated the possible mechanism by analyzing the phenotype of host APCs and donor-derived T cells. Notch signaling pathway had a broad effect on both host APCs and donor-derived T cells. The expressions of CD11c, CD40, and CD86 as the markers of activated dendritic cells (DCs) were decreased. The proliferative response of CD8+ T cell decreased, while CD4+ Notch-deprived T cells had preserved expansion with increased expressions of CD25 and Foxp3 as markers of regulatory T cells (Tregs). In conclusion, Notch inhibition may minimize aGVHD by decreasing proliferation and activation of DCs and CD8+ T cells while preserving Tregs expansion.  相似文献   
13.
环腺苷酸(cAMP)可在神经传递物刺激腺苷酸环化酶的作用下产生,而坏腺苷酸又可促成神经传递物的产生.用溴氰菊酯(deltamethrin)处理家蝇后,发现酪胺大量增加,主要由于酪氨酸脱羧酶受到诱导、活性增高所致.处理后一小时,cAMP也有增加,并与酶活性的增加相平行,但酪氨酸脱羧酶活性增高的曲线与cAMP量增加的曲线,实际上并不平行,因酪氨酸脱羧酶的活性是先增加,然后下降,而cAMP的量则是在开始时有一个小的下降,接着一直上升,而此时酶的诱导已下降,cAMP含量在诱导开始时出现下降的原因尚不明,可能与环鸟苷酸(cGMP)有关.但随后的上升显然是由于酪胺或章鱼胺的增加所造成.目前已证实,酪胺可经β-羟化作用形成章鱼胺,后者再刺激章鱼胺受体,而使腺苷酸环化酶活化,产生大量的cAMP.酪胺本身也可能就是章鱼胺受体的激活剂.  相似文献   
14.
本试验利用聚丙烯酰胺凝胶梯度电泳分步染色法直接对玉米苗期酯酶同工酶和过氧化物酶同工酶各酶带的分子量进行了比较测定。酯酶同工酶 E_1、E_2、E_3~F、E_3~S、a、b、c 各酶带的分子量分别为<20000,35200、33000、38500、29900、28500、34000道尔顿过氧化物酶同工酶 PX_4~F和 PX_4~S酶带的分子量分别为131000和149000道尔顿。根据酶带在均匀胶和梯度胶中的位置变化对各酶带的生化性质作了初步分析,发现 E_3~F和 E_3~S、PX_4~F 和 PX_4~S 在迁移率上的差异主要是分子量的差异。本文为同工酶的分子量测定提供了一个简便的方法。  相似文献   
15.
An attempt has been made to build a model of human rhinovirus 2 (HRV2) based on the known human rhinovirus 14 (HRV14) structure. HRV2 was selected because its amino acid sequence is known and because it belongs to the minor rhinovirus receptor class as compared to HRV14, which belongs to the major class. Initial alignment of HRV2 with HRV14 based on the primary sequence and the knowledge of the three-dimensional structure of HRV14 showed that the most probable position of the majority of insertions and deletions occurred in the vicinity of the neutralizing immunogenic sites (NIm). Out of a total of 855 amino acids present in one copy of each of the capsid proteins VP1 through VP4 of HRV14, 411 are different between the two viruses. There are also 6 amino acid residues inserted and 14 residues deleted in HRV2 relative to HRV14. Examination of amino acid interactions showed several cases of conservation of function, e.g., salt bridges or the filling of restricted space. The largest variation amongst the residues lining the canyon, the putative receptor binding site, was in the carboxy-terminal residues of VP1.  相似文献   
16.
亚洲东南部特有的新悬藓属的研究   总被引:3,自引:1,他引:2  
新悬藓属现知共4种,属于蔓藓科,为亚洲东南部特有,我国是该属植物分布的中心。本文提出拟猫尾藓仍归为船叶藓科更合适。  相似文献   
17.
The isomeric composition of type-III heptacarboxylic porphyrinogens derived from decarbosylation of uroporphyrinogen III by erythrocyte uroporphyringogen decarboxylase was analysed by h.p.l.c. with electrochemical detection. All four possible isomers were identified, and there were little differences in the proportion of isomers formed by erythrocytes from normal subjects and from patients with sporadic porphyria cutanea tarda. The results provide conclusive evidence that the normal decarboxylation pathway is random in nature, and the fourth isomer only increases when enzyme abnormality is found.  相似文献   
18.
原生质体来源的大白菜 Brasstca campessris var.pekinsis 悬浮细胞系在二甲亚砜的保护下,能在液氮中(-196℃)长期冻存。加入山梨醇能增强保护作用;而加入甘露糖则降低保护作用。培养基对冻存也有明显的影响。在液氮中存放的时间长短对细胞存活率没有多大影响。冻后相对活性最高可达75.4%,恢复生长快,化冻后重新悬浮培养6天,生长量可达300-500%。遮光比不遮光对恢复更有利。冻存后恢复生长的悬浮细胞,能与未经冰冻的对照一样进行原生质体分离和培养。  相似文献   
19.
Applied anatomy of the anterolateral femoral flap   总被引:13,自引:0,他引:13  
A study of the source of the blood supply to the anterolateral femoral flap was carried out on 42 lower limbs of adult cadavers (among them 35 cadavers with injection of red latex and 1 with india ink into the arteries and 6 vascular cast specimens), and the surface locations of the vascular pedicle were detected on 50 healthy adults. It was found that the descending branch of the lateral circumflex femoral vessel was an ideal axial vessel. There are constant perforating branches of the myocutaneous artery or cutaneous branches from the intermuscular space to the anterolateral femoral skin. The area extends about 12 x 30 cm. Within the flap, the anterior branch of the anterolateral cutaneous nerve of the high is located. This flap has been widely used for free transplantation in China since 1983 with satisfactory results.  相似文献   
20.
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