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肿瘤细胞转移无能的研究进展 被引量:1
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作者 顾斌 吴德政 《癌症》 SCIE CAS CSCD 北大核心 1998年第2期158-160,共3页
肿瘤细胞转移无能的研究进展顾斌吴德政关键词肿瘤转移活体体内显微摄像中图号R73-3无限地侵袭和转移是肿瘤细胞区别于正常组织细胞的重要生物学特征。肿瘤转移过程非常复杂,主要包括以下步骤:肿瘤细胞脱离原发灶、进入血管和/... 肿瘤细胞转移无能的研究进展顾斌吴德政关键词肿瘤转移活体体内显微摄像中图号R73-3无限地侵袭和转移是肿瘤细胞区别于正常组织细胞的重要生物学特征。肿瘤转移过程非常复杂,主要包括以下步骤:肿瘤细胞脱离原发灶、进入血管和/或淋巴管、逃避各种杀伤因素并存活下... 展开更多
关键词 肿瘤转移 活体 体内显微摄像 转移无能
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Optimal Initialization of a Quantum System for an Efficient Coherent Energy Transfer
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作者 Zhi-hao Gong Zhou-fei Tang +1 位作者 Jian-shu Cao Jianlan Wu 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2018年第4期421-432,613,共13页
For an energy transfer network, the irreversible depletion of excited electron energy occurs through either an efficient flow into an outer energy sink or an inefficient decay. With a small decay rate, the energy tran... For an energy transfer network, the irreversible depletion of excited electron energy occurs through either an efficient flow into an outer energy sink or an inefficient decay. With a small decay rate, the energy transfer efficiency is quantitatively reflected by the average life time of excitation energy before being trapped in the sink where the decay process is omitted. In the weak dissipation regime, the trapping time is analyzed within the exciton population subspace based on the secular Redfield equation. The requirement of the noise-enhanced energy transfer is obtained, where the trapping time follows an exact or approximate 1/F- scaling of the dissipation strength F. On the opposite side, optimal initial system states are conceptually constructed to suppress the 1/F-scaling of the trapping time and maximize the coherent transfer efficiency. Our theory is numerically testified in four models, including a biased two-site system, a symmetric three-site branching system, a homogeneous one- dimensional chain, and an 8-chromophore FMO protein complex. 展开更多
关键词 Noise-enhanced energy transfer Trapping-free subspace Optimal initializa-tion Quantum dissipation
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