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   4358篇
  免费   26篇
  国内免费   62篇
系统科学   27篇
丛书文集   83篇
教育与普及   64篇
理论与方法论   5篇
现状及发展   1970篇
研究方法   199篇
综合类   2086篇
自然研究   12篇
  2012年   57篇
  2011年   86篇
  2010年   38篇
  2009年   104篇
  2008年   87篇
  2007年   116篇
  2006年   71篇
  2005年   117篇
  2004年   130篇
  2003年   82篇
  2002年   83篇
  2001年   218篇
  2000年   193篇
  1999年   141篇
  1998年   32篇
  1997年   28篇
  1996年   21篇
  1995年   30篇
  1992年   100篇
  1991年   90篇
  1990年   92篇
  1989年   70篇
  1988年   78篇
  1987年   80篇
  1986年   59篇
  1985年   98篇
  1984年   81篇
  1983年   62篇
  1982年   65篇
  1981年   59篇
  1980年   75篇
  1979年   146篇
  1978年   134篇
  1977年   107篇
  1976年   79篇
  1975年   73篇
  1974年   98篇
  1973年   103篇
  1972年   89篇
  1971年   111篇
  1970年   100篇
  1969年   96篇
  1968年   95篇
  1967年   87篇
  1966年   86篇
  1965年   58篇
  1959年   24篇
  1958年   41篇
  1957年   32篇
  1956年   29篇
排序方式: 共有4446条查询结果,搜索用时 15 毫秒
681.
682.
683.
684.
685.
Résumé Le réflexe monosynaptique (MSR) du nerf tibial ou du péronier a été observé chez le chat intact en expériences chroniques et non-anesthesié au cours des deux différentes phases du sommeil; la phase de hautvoltage ou des fuseaux et la phase paradoxale de basvoltage.Au cours de cette dernière, le MSR diminue d'amplitude, souvent même disparaît, et le seuil est toujours haut placé.  相似文献   
686.
687.
The nature of ultrahigh-energy cosmic rays (UHECRs) at energies >10(20) eV remains a mystery. They are likely to be of extragalactic origin, but should be absorbed within approximately 50 Mpc through interactions with the cosmic microwave background. As there are no sufficiently powerful accelerators within this distance from the Galaxy, explanations for UHECRs range from unusual astrophysical sources to exotic string physics. Also unclear is whether UHECRs consist of protons, heavy nuclei, neutrinos or gamma-rays. To resolve these questions, larger detectors with higher duty cycles and which combine multiple detection techniques are needed. Radio emission from UHECRs, on the other hand, is unaffected by attenuation, has a high duty cycle, gives calorimetric measurements and provides high directional accuracy. Here we report the detection of radio flashes from cosmic-ray air showers using low-cost digital radio receivers. We show that the radiation can be understood in terms of the geosynchrotron effect. Our results show that it should be possible to determine the nature and composition of UHECRs with combined radio and particle detectors, and to detect the ultrahigh-energy neutrinos expected from flavour mixing.  相似文献   
688.
Cellular responses to mild heat stress   总被引:12,自引:0,他引:12  
Since its discovery in 1962 by Ritossa, the heat shock response has been extensively studied by a number of investigators to understand the molecular mechanism underlying the cellular response to heat stress. The most well characterized heat shock response is induction of the heat shock proteins that function as molecular chaperones and exert cell cycle regulatory and anti-apoptotic activities. While most investigators have focused their studies on the toxic effects of heat stress in organisms such as severe heat stress-induced cell cycle arrest and apoptosis, the cellular response to fever-ranged mild heat stress has been rather underestimated. However, the cellular response to mild heat stress is likely to be more important in a physiological sense than that to severe heat stress because the body temperature of homeothermic animals increases by only 1–2°C during febrile diseases. Here we provide information that mild heat stress does have some beneficial role in organisms via positively regulating cell proliferation and differentiation, and immune response in mammalian cells.Received 14 May 2004; received after revision 2 August 2004; accepted 16 August 2004  相似文献   
689.
Lactoferrin     
Mammalian lactoferrin (Lf) receptors are suggested to have pivotal roles for mediating multiple functions of Lf. In this review, we focus on current knowledge of the structure and function of mammalian Lf receptors, mainly the first cloned Lf receptor that has been shown to be expressed in the infant small intestine at high levels but also in virtually all other tissues. The small intestinal Lf receptor takes up iron from Lf into cells and presumably exerts other physiological functions. Other Lf receptors in various tissues have also been reported to mediate some functions of Lf, such as modulating immune function, inhibiting platelet aggregation and enhancing collagen gel contractile strength. The detailed mechanisms behind the receptor-Lf interactions still need to be elucidated.  相似文献   
690.
There is currently much interest in the development of 'spintronic' devices, in which harnessing the spins of electrons (rather than just their charges) is anticipated to provide new functionalities that go beyond those possible with conventional electronic devices. One widely studied example of an effect that has its roots in the electron's spin degree of freedom is the torque exerted by a spin-polarized electric current on the spin moment of a nanometre-scale magnet. This torque causes the magnetic moment to rotate at potentially useful frequencies. Here we report a very different phenomenon that is also based on the interplay between spin dynamics and spin-dependent transport, and which arises from unusual diode behaviour. We show that the application of a small radio-frequency alternating current to a nanometre-scale magnetic tunnel junction can generate a measurable direct-current (d.c.) voltage across the device when the frequency is resonant with the spin oscillations that arise from the spin-torque effect: at resonance (which can be tuned by an external magnetic field), the structure exhibits different resistance states depending on the direction of the current. This behaviour is markedly different from that of a conventional semiconductor diode, and could form the basis of a nanometre-scale radio-frequency detector in telecommunication circuits.  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