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   72058篇
  免费   5081篇
  国内免费   3285篇
  2024年   169篇
  2023年   1118篇
  2022年   1826篇
  2021年   2345篇
  2020年   2197篇
  2019年   2473篇
  2018年   2466篇
  2017年   1781篇
  2016年   1753篇
  2015年   2262篇
  2014年   4266篇
  2013年   5328篇
  2012年   3200篇
  2011年   4317篇
  2010年   3319篇
  2009年   3695篇
  2008年   3777篇
  2007年   3845篇
  2006年   3414篇
  2005年   3063篇
  2004年   2714篇
  2003年   2309篇
  2002年   2047篇
  2001年   1412篇
  2000年   1188篇
  1999年   1233篇
  1998年   1134篇
  1997年   993篇
  1996年   936篇
  1995年   859篇
  1994年   798篇
  1993年   733篇
  1992年   616篇
  1991年   589篇
  1990年   458篇
  1989年   420篇
  1988年   386篇
  1987年   360篇
  1986年   325篇
  1985年   452篇
  1984年   654篇
  1983年   511篇
  1982年   563篇
  1981年   391篇
  1980年   378篇
  1979年   318篇
  1978年   233篇
  1977年   182篇
  1976年   153篇
  1975年   134篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
991.
圣倩倩  宋爽  陈文静  宋敏  祝遵凌 《生态学报》2023,43(12):5110-5121
植物的形态结构和光合作用能够反映植物对城市空气污染的响应特性。探究城市道路机动车尾气中的典型污染物NO2气体,对植物叶片的生理光合响应特性。以二年生三角梅(Bougainvillea spectabilis)幼苗为对象,利用智能化人工熏气室模拟熏气(NO2体积分数分别为0 μL/L (自然空气)、4 μL/L,8 μL/L,记作CK、T1、T2),观察NO2胁迫后三角梅的叶片形态、微观结构和光合特征。结果表明:(1)通过叶片形态观察发现,与CK相比,低浓度T1组叶片变化不明显,随着NO2气体胁迫浓度的增加,高浓度T2组叶片逐渐出现失水、叶表面有明显的水渍状或烧灼状黄色斑点。(2)通过叶片微观结构解剖发现,高浓度NO2胁迫后气孔皱缩程度增加,气孔开度减小;叶绿体结构变形,尤其是类囊体结构疏松,膨胀等变化。(3)叶片光合特性分析发现,T1和T2组的NO2胁迫导致光饱和点(LSP)和最大净光合速率(Pnmax)下降、光补偿点(LCP)增加,表观量子效率(AQE)和暗呼吸速率(Rd)在4种光响应模型中变化规律存在一定的差异性。(4)4种光响应模型中,CK组决定系数(R2)越高,均方根误差(RMSE)越低,精度最高,尤以叶子飘等机理模型为最优,拟合效果最好,其次是直角双曲线模型。研究结果表明三角梅可通过自身的形态变化、调整光合特征参数,较好地适应不同浓度的NO2,尤其是高浓度急性胁迫下,该研究结果有助于促进不同道路绿地三角梅的推广应用,对探究三角梅的景观效益和生态效益,揭示其对环境异质性的适应机制具有重要意义。  相似文献   
992.
生长抑素(somatostatin, SST)作为一种抑制性多肽激素,在多种生物过程中发挥重要的功能。生长抑素受体2 (somatostatin receptor 2, SSTR2)作为生长抑素表达最广泛的受体在多种组织中表达,但其表达的具体细胞类型尚不清楚。本研究在小鼠不同发育阶段的多种组织中鉴定了SSTR2蛋白表达的细胞类型。通过多色免疫荧光在小鼠胚胎期15.5 d、出生后1 d、7 d、15 d、3个月和6个月的脑、骨、肺、肠道、皮肤、胃、脾和肾等组织中检测了Sstr2基因的表达。结果发现Sstr2在不同发育阶段的多种组织的特定细胞类型中表达,包括脑神经元和星形胶质细胞,骨的间充质基质细胞、造血细胞和B细胞,肺的巨噬细胞、Ⅱ型肺泡上皮细胞和气道纤毛细胞,肠道的上皮细胞和神经元,皮肤的毛囊细胞,胃体的上皮细胞,脾的造血干细胞、造血祖细胞和神经纤维,肾的肾小管上皮细胞等。本研究确定了小鼠多组织不同发育阶段Sstr2表达的细胞类型,为生长抑素与生长抑素受体2的生理功能研究提供了新的线索。  相似文献   
993.
994.
动物胃肠道是食物消化和营养吸收器官,对机体健康至关重要。果蝇与哺乳动物的肠道在细胞组成、遗传调控等方面高度相似,是研究肠道发育的良好模型。体外培养细胞中的研究发现,Nprl2通过作用于Rag GTPase,抑制雷帕霉素靶点复合物1(target of rapamycin complex 1,TORC1)的活性,参与细胞代谢的调节。前期报道nprl2突变果蝇具有前胃增大、消化能力降低等肠道衰老相关表型。但对于Nprl2是否通过Rag GTPase调控肠道发育等方面尚不清楚。为了探究Rag GTPase在Nprl2调控果蝇肠道发育中的作用,本研究利用遗传杂交结合免疫荧光等方法对RagA敲减和nprl2突变果蝇的肠道形态、肠道细胞组成等方面进行研究。发现单独敲减RagA可以引起肠变粗、前胃增大等表型,敲减RagA能挽救nprl2突变体中肠道变细、分泌型细胞减少的表型,但并不能挽救nprl2突变体中前胃增大的表型。以上结果表明,RagA在肠道发育中发挥重要作用,Nprl2通过作用于Rag GTPase调节肠道细胞分化和肠道形态,但Nprl2对前胃发育和肠道的消化功能的调节可能通过不依赖于Rag GTPase的机制实现。  相似文献   
995.
996.
Thermostable direct hemolysin (TDH) is a ~19 kDa, hemolytic pore-forming toxin from the gram-negative marine bacterium Vibrio parahaemolyticus, one of the causative agents of seafood-borne acute gastroenteritis and septicemia. Previous studies have established that TDH exists as a tetrameric assembly in physiological state; however, there is limited knowledge regarding the molecular arrangement of its disordered N-terminal region (NTR)—the absence of which has been shown to compromise TDH's hemolytic and cytotoxic abilities. In our current study, we have employed single-particle cryo-electron microscopy to resolve the solution-state structures of wild-type TDH and a TDH construct with deletion of the NTR (NTD), in order to investigate structural aspects of NTR on the overall tetrameric architecture. We observed that both TDH and NTD electron density maps, resolved at global resolutions of 4.5 and 4.2 Å, respectively, showed good correlation in their respective oligomeric architecture. Additionally, we were able to locate extra densities near the pore opening of TDH which might correspond to the disordered NTR. Surprisingly, under cryogenic conditions, we were also able to observe novel supramolecular assemblies of TDH tetramers, which we were able to resolve to 4.3 Å. We further investigated the tetrameric and inter-tetrameric interaction interfaces to elaborate upon the key residues involved in both TDH tetramers and TDH super assemblies. Our current structural study will aid in understanding the mechanistic aspects of this pore-forming toxin and the role of its disordered NTR in membrane interaction.  相似文献   
997.
Increased ability to predict protein structures is moving research focus towards understanding protein dynamics. A promising approach is to represent protein dynamics through networks and take advantage of well-developed methods from network science. Most studies build protein dynamics networks from correlation measures, an approach that only works under very specific conditions, instead of the more robust inverse approach. Thus, we apply the inverse approach to the dynamics of protein dihedral angles, a system of internal coordinates, to avoid structural alignment. Using the well-characterized adhesion protein, FimH, we show that our method identifies networks that are physically interpretable, robust, and relevant to the allosteric pathway sites. We further use our approach to detect dynamical differences, despite structural similarity, for Siglec-8 in the immune system, and the SARS-CoV-2 spike protein. Our study demonstrates that using the inverse approach to extract a network from protein dynamics yields important biophysical insights.  相似文献   
998.
BackgroundIn recent months, the current COVID-19 pandemic has generated thousands of studies directly or indirectly related with this disease and/or the coronavirus SARS-CoV-2 causing the infection. On August 22, 2022, the database PUBMED included 287,639 publications containing the term COVID-19. However, in spite of the importance of trace elements in human health, including the immune system, data on the levels of metals/metalloids in COVID-19 patients is very limited.MethodsThe concentrations of As, Cd, Cr, Cu, Hg, Fe, Mg, Mn, Pb, Se, V and Zn were determined by inductively coupled plasma-mass spectrometry (ICP-MS) in 126 serum samples of individuals infected with SARS-CoV-2, as well as in 88 samples of non-infected individuals. Participants were divided into four groups: i) individuals COVID-19 positive (COVID-19 +) with an asymptomatic infection course; ii) individuals suffering mild COVID-19; iii) individuals suffering severe COVID-19, and iv) individuals COVID-19 negative (COVID-19-) (control group). The occurrence of the analyzed metals/metalloids was evaluated along with the biochemical profile, including blood cell counts, lipids, proteins and crucial enzymes.ResultsSerum levels of Mg, V, Cr, Cu, Cd, and Pb were higher in COVID-19 positive patients than those in the control group. Although no significant differences were observed between the different groups of patients, the concentrations of Cd, Pb, V and Zn showed a tendency to be higher in individuals with severe COVID-19 than in those showing mild symptoms or being asymptomatic. Arsenic and Hg were rarely detected, regardless if the subjects were infected by SARS-CoV-2, or not. The current results did not show significant differences in the levels of the rest of analyzed elements according to the severity of the disease (asymptomatic, mild and severe).ConclusionsIn spite of the results here obtained, we highlight the need to reduce the exposure to Cd, Pb and V to minimize the potential adverse health outcomes after COVID-19 infection. On the other hand, although a protective role of essential elements was not found, Mg and Cu concentrations were higher in severe COVID-19 patients than in non-infected individuals.  相似文献   
999.
1000.
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