Taking the minimum chip thickness effect,cutter deflection,and spindle run-out into account,a micro milling force model and a method to determine the optimal micro milling parameters were developed.The micro milling f...Taking the minimum chip thickness effect,cutter deflection,and spindle run-out into account,a micro milling force model and a method to determine the optimal micro milling parameters were developed.The micro milling force model was derived as a function of the cutting coefficients and the instantaneous projected cutting area that was determined based on the machining parameters and the rotation trajectory of the cutter edges.When an allowable micro cutter deflection is defined,the maximum allowable cutting force can be determined.The optimal machining parameters can then be computed based on the cutting force model for better machining efficiency and accuracy.To verify the proposed cutting force model and the method to determine the optimal cutting parameters,micro-milling experiments were conducted,and the results show the feasibility and effectiveness of the model and method.展开更多
染色体免疫共沉淀测序(Chromatin immunoprecipitation followed by sequencing,ChIP-seq)是研究DNA-蛋白质互作的有力工具,被广泛用于RNA聚合酶、转录因子和组蛋白修饰等在基因组上的精确定位。近年来,在ChIP-seq技术的基础上,科学家...染色体免疫共沉淀测序(Chromatin immunoprecipitation followed by sequencing,ChIP-seq)是研究DNA-蛋白质互作的有力工具,被广泛用于RNA聚合酶、转录因子和组蛋白修饰等在基因组上的精确定位。近年来,在ChIP-seq技术的基础上,科学家提出了一系列研究DNA-蛋白质互作的技术方法,提高了测序分辨率,降低了实验成本,极大推动了表观基因组学的发展。本文综述了多种DNA-蛋白质互作研究技术的原理及其应用场景,介绍了在单细胞水平上研究DNA-蛋白质互作的实现方法,并展望其未来发展的方向。展开更多
基金Project(NSC98-2221-E-033-047)supported by National Science Council
文摘Taking the minimum chip thickness effect,cutter deflection,and spindle run-out into account,a micro milling force model and a method to determine the optimal micro milling parameters were developed.The micro milling force model was derived as a function of the cutting coefficients and the instantaneous projected cutting area that was determined based on the machining parameters and the rotation trajectory of the cutter edges.When an allowable micro cutter deflection is defined,the maximum allowable cutting force can be determined.The optimal machining parameters can then be computed based on the cutting force model for better machining efficiency and accuracy.To verify the proposed cutting force model and the method to determine the optimal cutting parameters,micro-milling experiments were conducted,and the results show the feasibility and effectiveness of the model and method.
文摘染色体免疫共沉淀测序(Chromatin immunoprecipitation followed by sequencing,ChIP-seq)是研究DNA-蛋白质互作的有力工具,被广泛用于RNA聚合酶、转录因子和组蛋白修饰等在基因组上的精确定位。近年来,在ChIP-seq技术的基础上,科学家提出了一系列研究DNA-蛋白质互作的技术方法,提高了测序分辨率,降低了实验成本,极大推动了表观基因组学的发展。本文综述了多种DNA-蛋白质互作研究技术的原理及其应用场景,介绍了在单细胞水平上研究DNA-蛋白质互作的实现方法,并展望其未来发展的方向。