从互动到沉浸式分子动力学

N. Férey, O. Delalande, G. Grasseau, M. Baaden
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引用次数: 4

摘要

分子动力学模拟现在经常用于补充实验研究并克服它们的一些局限性。特别是,目前的实验技术不允许在原子细节上直接观察大分子的全部动力学。分子模拟引擎根据生物物理模型提供随时间变化的原子位置、速度和系统能量。许多分子模拟引擎现在可以计算出有趣的生物系统在相互作用时间内的分子动力学轨迹。这一进展导致了一种称为相互作用分子动力学的新方法。它允许用户控制和可视化正在进行的分子模拟。我们已经开发了一个通用库,称为MDDriver,以便于实现这种交互式模拟。它允许人们轻松地在分子用户界面和基于物理的模拟之间创建网络连接。我们使用这个库来研究生物分子系统,通过各种相互作用的分子引擎和模型进行模拟。我们使用经典的分子可视化工具和触觉设备来控制分子的动态行为。这种方法为与生物分子相互作用和理解其动力学提供了令人鼓舞的结果。从最初的成功开始,我们决定更深入地使用虚拟现实(VR)功能,通过设计一个致力于沉浸式和交互式分子模拟的VR框架。该框架基于MDDriver、可视化工具包VTK和vtkVRPN库,后者将VRPN库封装到VTK中。ACM
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From Interactive to Immersive Molecular Dynamics
Molecular Dynamics simulations are nowadays routinely used to complement experimental studies and overcome some of their limitations. In particular, current experimental techniques do not allow to directly observe the full dynamics of a macromolecule at atomic detail. Molecular simulation engines provide time-dependent atomic positions, velocities and system energies according to biophysical models. Many molecular simulation engines can now compute a molecular dynamics trajectory of interesting biological systems in interactive time. This progress has lead to a new approach called Interactive Molecular Dynamics. It allows the user to control and visualise a molecular simulation in progress. We have developed a generic library, called MDDriver, in order to facilitate the implementation of such interactive simulations. It allows one to easily create a network connection between a molecular user interface and a physically-based simulation. We use this library in order to study a biomolecular system, simulated by various interaction-enabled molecular engines and models. We use a classical molecular visualisation tool and a haptic device to control the dynamic behavior of the molecule. This approach provides encouraging results for interacting with a biomolecule and understanding its dynamics. Starting from this initial success, we decided to use Virtual Reality (VR) functionalities more intensively, by designing a VR framework dedicated to immersive and interactive molecular simulations. This framework is based on MDDriver, on the visualisation toolkit VTK, and on the vtkVRPN library, which encapsulates the VRPN library into VTK. ACM
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