首页> 外文会议>Haptic Interfaces for Virtual Environment and Teleoperator Systems, 2006 14th Symposium on >Energy-Field Optimization and Haptic-Based Molecular Docking and Assembly Search System for Computer-Aided Molecular Design (CAMD)
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Energy-Field Optimization and Haptic-Based Molecular Docking and Assembly Search System for Computer-Aided Molecular Design (CAMD)

机译:能量场优化和基于触觉的分子对接和装配搜索系统,用于计算机辅助分子设计(CAMD)

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This paper presents a new system using a haptic device with an automatic molecular docking and assembly search method for the problems of molecular docking and molecular assembly in computer-aided molecular design (CAMD). The developed haptic force-torque feedback provides the users an intuitive tool for understanding the interactions among molecules while an automatic docking and assembly search method, NanoDAS, assists the user on determining the docking and assembly feasibility. The proposed system can be used as a tool to screen out candidate molecules that are infeasible, in terms of geometry and energy, to dock or assemble into a larger molecule. This identification of feasible molecules can significantly improve and accelerate the discovery and design of new pharmaceutical drugs and nanoscale devices in CAMD. Computer implementation and illustrative examples are also presented in this paper.
机译:本文针对计算机辅助分子设计(CAMD)中的分子对接和分子组装问题,提出了一种采用触觉设备的自动分子对接和组装搜索方法的新系统。发达的触觉力-扭矩反馈为用户提供了一个直观的工具,用于理解分子之间的相互作用,同时自动对接和组装搜索方法NanoDAS可以帮助用户确定对接和组装的可行性。所提出的系统可以用作一种工具,以筛选出在几何形状和能量方面不可行的候选分子,以停靠或组装成更大的分子。对可行分子的这种鉴定可以显着改善和加速CAMD中新药物和纳米级装置的发现和设计。本文还介绍了计算机实现和说明性示例。

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