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   2397篇
  免费   183篇
  国内免费   441篇
  3021篇
  2024年   12篇
  2023年   32篇
  2022年   99篇
  2021年   119篇
  2020年   76篇
  2019年   92篇
  2018年   92篇
  2017年   82篇
  2016年   95篇
  2015年   131篇
  2014年   161篇
  2013年   178篇
  2012年   238篇
  2011年   231篇
  2010年   142篇
  2009年   141篇
  2008年   163篇
  2007年   100篇
  2006年   128篇
  2005年   111篇
  2004年   81篇
  2003年   77篇
  2002年   86篇
  2001年   58篇
  2000年   41篇
  1999年   31篇
  1998年   18篇
  1997年   14篇
  1996年   10篇
  1995年   8篇
  1994年   11篇
  1993年   13篇
  1992年   15篇
  1991年   14篇
  1990年   19篇
  1989年   9篇
  1988年   10篇
  1987年   6篇
  1986年   8篇
  1985年   6篇
  1984年   4篇
  1983年   5篇
  1982年   6篇
  1981年   7篇
  1980年   5篇
  1977年   6篇
  1975年   4篇
  1973年   3篇
  1972年   4篇
  1967年   3篇
排序方式: 共有3021条查询结果,搜索用时 15 毫秒
81.
82.
83.

Objectives

To develop and validate a microdilution method for measuring the minimum inhibitory concentration (MIC) of biosurfactants.

Results

A standardized microdilution method including resazurin dye has been developed for measuring the MIC of biosurfactants and its validity was established through the replication of tetracycline and gentamicin MIC determination with standard bacterial strains.

Conclusion

This new method allows the generation of accurate MIC measurements, whilst overcoming critical issues related to colour and solubility which may interfere with growth measurements for many types of biosurfactant extracts.
  相似文献   
84.
目的检验小鼠休眠胚胎冻融后的质量及体内外发育潜力,为胚胎休眠技术的生产应用提供必要的参考。方法采用常规冷冻方法将正常孵化期胚胎和休眠胚胎进行冷冻,之后分别进行体外复苏培养实验和胚胎移植实验。随后利用双重荧光染色的方法分别对冻融前后的小鼠休眠胚胎与正常孵化期胚胎进行细胞计数,观察两种胚胎冻融前后的质量变化。结果休眠胚胎的冷冻解冻回收率、发育率均极显著高于孵化期胚胎(72.1%vs 50.2%,P<0.01;94.2%vs 73.9%,P<0.01)。休眠胚胎的移植妊娠率显著高于孵化期胚胎(40.8%vs 30.1%,P<0.05)。休眠胚胎的内细胞团细胞数显著高于孵化期胚胎(27.83 vs 19.53,P<0.05),滋养层细胞数差异不显著。冻融培养后休眠胚胎的内细胞团数,滋养层细胞数均显著高于孵化期胚胎(25.18 vs 14.68,P<0.05;114.09 vs 73.88,P<0.05)。结论小鼠休眠胚胎冻融后胚胎质量及体内外发育潜力均优于小鼠正常孵化期胚胎。  相似文献   
85.
Enzyme-based catalysis has become one of the most important disciplines in organic synthesis and plays a noteworthy role in the establishment of many chemical industries, e.g. fine chemicals, food or energy, textiles, agricultural, cosmeceutical, medicinal and pharmaceutical industries. However, pristine enzymes fail to demonstrate requisite functionalities for an industrial setting where extremely specific and stable catalysts are required. Immobilization enhances the catalytic stability and activity of enzymes and trims the overall cost burden of the enzyme. Therefore, it widely endeavours for proficient, sustainable, and environmentally responsive catalytic processes. Amongst several immobilization strategies, e.g. (1) supports-assisted, i.e. physical or covalent coupling and (2) supports-free techniques, i.e. cross-linked enzyme crystals (CLECs) or aggregates are the most promising ones and widely pursued for enzyme immobilization purposes. This perspective review focuses on up-to-date developments in the area of enzyme immobilization and presents their potentialities to upgrade and/or modify enzyme properties. Both types of immobilization strategies, i.e. supports-assisted and supports-free techniques are discussed with particular reference to CLECs or aggregates and protein-coated microcrystals. Also, several useful traits achieved after immobilization are also discussed in the second half of the review.  相似文献   
86.
87.
A total of 266 endophytic fungal isolates were recovered from 1019 tissue segments of Glycyrrhiza glabra collected from four different locations in the North-Western Himalayas. The endophytes grouped into 21 genera and 38 different taxa. The host had strong affinity for the genus Phoma, followed by Fusarium. The species richness was highest at the sub-tropical location, followed by the sub-temperate location and the temperate locations, respectively. The tissue specificity of endophytes was also evident. Some endophytes showed potential antimicrobial activity against phyto-pathogens indicating that they may be helpful to the host in evading pathogens. All the endophytic taxa produced the plant growth promoting hormone, indole acetic acid (IAA), though in varying concentrations. None of these endophytes caused any symptoms of disease in co-cultivation with the tissue cultured plants. Further, all the endophytes had a positive influence on the phenolic and flavonoid content of the host. Three endophytes, Stagonosporopsis cucurbitacearum, Bionectria sp. and Aspergillus terreus also increased the host root (rhizome) and shoot growth visibly. Such endophytes are potential candidates for developing endophyte-based technologies for sustainable cultivation and enhanced productivity of G. glabra. This is the first report of community structure and biological properties of fungal endophytes associated with G. glabra.  相似文献   
88.
监测区域植被覆盖变化并分析其驱动因子,有利于实现生态环境的可持续发展。本研究以1989—2021年Landsat 5/8遥感影像为数据源,利用像元二分模型获取宁夏贺兰山植被覆盖度,基于地理探测器量化了环境和人为等10个因子对其时空分布的影响。结果表明: 1989—2021年间,宁夏贺兰山平均植被覆盖度为35.8%,时间尺度上总体呈增加趋势,平均增幅为0.043·(10 a)-1,空间尺度上呈现从西南向东北递减的分布特征;研究区58.1%的区域植被覆盖度未来将持续性改善,但仍有30.7%的植被存在退化的潜在风险。降水是影响植被分布的主要环境因子,与单因子相比,环境因子和人为因子的交互作用对植被覆盖度的解释力更强,降水与其他因子的交互作用处于主导作用。  相似文献   
89.
The hexose monophosphate (HMP) shunt acts as an essential component of cellular metabolism in maintaining carbon homeostasis. The HMP shunt comprises two phases viz. oxidative and nonoxidative, which provide different intermediates for the synthesis of biomolecules like nucleotides, DNA, RNA, amino acids, and so forth; reducing molecules for anabolism and detoxifying the reactive oxygen species during oxidative stress. The HMP shunt is significantly important in the liver, adipose tissue, erythrocytes, adrenal glands, lactating mammary glands and testes. We have researched the articles related to the HMP pathway, its metabolites and disorders related to its metabolic abnormalities. The literature for this paper was taken typically from a personal database, the Cochrane database of systemic reviews, PubMed publications, biochemistry textbooks, and electronic journals uptil date on the hexose monophosphate shunt. The HMP shunt is a tightly controlled metabolic pathway, which is also interconnected with other metabolic pathways in the body like glycolysis, gluconeogenesis, and glucuronic acid depending upon the metabolic needs of the body and depending upon the biochemical demand. The HMP shunt plays a significant role in NADPH2 formation and in pentose sugars that are biosynthetic precursors of nucleic acids and amino acids. Cells can be protected from highly reactive oxygen species by NADPH 2. Deficiency in the hexose monophosphate pathway is linked to numerous disorders. Furthermore, it was also reported that this metabolic pathway could act as a therapeutic target to treat different types of cancers, so treatments at the molecular level could be planned by limiting the synthesis of biomolecules required for proliferating cells provided by the HMP shunt, hence, more experiments still could be carried out to find additional discoveries.  相似文献   
90.
Molecular and Cellular Biochemistry - The protective activity of N-(2-hydroxyphenyl)acetamide (NA-2) and NA-2-coated gold nanoparticles (NA-2-AuNPs) in glycerol-treated model of acute kidney 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