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150篇 您的检索式:作者名="Karplus M"
    题名 作者 年代 出处 被引量
1昆仑山深部结构与造山机制显示文摘本文根据INDEPTH-Ⅳ剖面所做的地质、地球物理探测所取得的资料,进行综合研究,提出了一个新的昆仑山造山模式,论述了:(1)在早二叠世松潘—甘孜洋向昆仑—柴达木地块下俯冲使地块南缘形成陆缘弧和弧后拉张区,使昆仑—柴达木地块在持续碰撞挤压过程中,分别形成了造山带与古近—新近纪盆地的不同构造演化特征;(2)昆仑地段老结晶基底在地块对挤中不断向上抬升成山,同时又受到强烈剥蚀,使老结晶基底及深成岩呈现在地表;南昆仑地块则沿昆仑地块中央断裂向北逆冲到北昆仑地块之上,断裂深10km;昆仑地块没有发生向北逆冲推覆到柴达木地块上;(3)昆仑地块地壳增厚主要发生在中地壳(6.2~6.6 km/s),是中基性岩石层的增厚;(4)柴达木盆地作为昆仑弧弧后拉张地带,随昆仑造山隆升而下沉,新生界陆相沉积达12~14km厚,由“沉积”与“挤入”两个作用造成了地壳增厚;结晶基底发生断陷形成新裂谷,裂谷宽度约12km,深度约4km,导电带显示裂谷通过断裂与深部发生热流体联系;(5)再次确定了,柴达木盆地莫霍界面深52 km,昆仑山的莫霍界面深65~70 km,莫霍界面台阶位于格尔木附近(185km距离处);(6)松潘—甘孜地体复理石层厚度为10~14 km,其下面的6.2~6.3 km/s均匀速度层(同时有高导电性显示)是本地块所特有,推测为残留洋壳的堆积,约15km厚;浅层通过古近—新近系风火山推覆系增厚,另在中地壳部位挤入了15km厚岩层;(7)否定了亚洲岩石圈地幔向柴达木地块地幔岩石圈之下俯冲的模式,提出印度大陆地幔岩石圈从高喜马拉雅下拆离成两层,并沿高原地壳底部向北伸展,直到中祁连山之下,成为高原南北对挤过程中岩石圈地幔长度调节的新方式.赵文津 吴珍汉 史大年 薛光琪 宿和平 Karplus M S Mechie J 宋洋 杨宏伟 刘志伟 2014中国地质2014,41,1:15
2How enzymes work:analysis by modern rate theory and computer simulations显示文摘Garcia-Viloca M Gao J Karplus M 2004Science2004,303,:1
3Molecular dynamics simulations in biology 显示文摘Karplus M Petsko G A 1990Nature1990,347,6294:1
4Neural networks for secondary structure and structural class prediction 显示文摘Chandonia J M Karplus M 1995Protein Science1995,,4:1
5First-order disorder-to-order transition in an isolated homopolymer model 显示文摘Zhou Y Q Hall C K Karplus M 1996Physical Review Letters1996,77,13:1
6Kinetics of protein folding显示文摘Sali A Shakhnovich E Karplus M 1994Journal of Molecular Biology1994,235,5:1
7Folding of a model three-helix bundle protein: A thermodynamic and kinetic analysis 显示文摘Zhou Y Q Karplus M 1999Journal of Molecular Biology1999,293,4:1
8Vicinal proton coupling in nuclear magnetic resonance 显示文摘KARPLUS M 1963J Am Chem Soc1963,85,18:1
9Force generation in kinesin hinges on cover-neck bundle formation显示文摘HWANG W LANG M J KARPLUS M 2008Structure2008,16,1:1
10Integral equation model for aqueous solvation of polyatomic solutes: application to the determination of the free energy surface for the internal motion of biomolecules 显示文摘PETrITr B M KARPLUS M ROSSKY P J 1986The journal of Physical Chemistry1986,90,23:1
11A combined quantum mechanical and molecular mechanical potential for molecular dynamics simulations显示文摘FIELD M J BASH P A KARPLUS M 1990Journal of Computational Chemistry1990,11,6:1
12Evaluafion of Local Structure Alphabcts Based on Residue Burial显示文摘Karchin R Cline M Karplus K 2004Proteins2004,55,3:1
13Protein Secondary Structure Prediction with a Neural Network显示文摘Holley L H Karplus M 1989Proceedings of the National Academy of Sciences1989,86,1:1
14Molecular Dynamics of Biological Macromolecules : A Brief History and Perspective 显示文摘KARPLUS M 2003Biopolymers2003,68,:1
15An All-atom Empirical Energy Function for the Simulation of Nucleic Acids显示文摘 Wiorkiewiczkuczera J Karplus M 1995J Am Chem Soc1995,117,11:1
16Early postnatal dexamethasone treatment and increased incidence of cerebral palsy显示文摘Shinwell ES Karplus M Reich D 2000Arch Dis Child Fetal Neonatal Ed2000,83,:1
17The distance fluctuation criterion for melting: Comparison of squarewell and Morse potential models for clusters and homopolymers显示文摘Zhou Y Q Karplus M Ball K D 2002Journal of Chemical Physics2002,116,5:1
18Structural and energetic effects of truncating long ranged interactions in ionic and polar fluids显示文摘Brooks III C L Pettitt B M Karplus M 1985J Chem Phys1985,83,:1
19Hall effect in ferromag- netics 显示文摘Robert Karplus Luttinger J M 1954Physical Review1954,95,5:1
20Harmonic dynamics of proteins:normalmodes and fluctuations in bovine pancreatic trypsin inhibitor显示文摘Brooks B Karplus M 1998Proc Natl Acad Sci USA1998,380,:1
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