Duncan B S, Olson A J
Scripps Research Institute, La Jolla, California 92037, USA.
J Mol Graph. 1995 Aug;13(4):250-7. doi: 10.1016/0263-7855(95)00039-9.
We present a method for the approximation and real-time visualization of large-scale motion of protein surfaces. A molecular surface is represented by an expansion of spherical harmonic functions, and the motion of protein atoms around their equilibrium positions is computed by normal mode analysis. The motion of the surface is approximated by projecting the normal mode vectors of the solvent-accessible atoms to the spherical harmonic representation of the molecular surface. These surface motion vectors are represented by a separate spherical harmonic expansion. Representing the surface geometry and the surface motion vectors by spherical harmonic expansions allows variable-resolution analysis and real-time display of the large-scale surface motion. This technique has been applied to interactive visualization, interactive surface manipulation, and animation.
我们提出了一种用于蛋白质表面大规模运动的近似和实时可视化的方法。分子表面由球谐函数展开表示,蛋白质原子围绕其平衡位置的运动通过简正模式分析来计算。表面的运动通过将溶剂可及原子的简正模式向量投影到分子表面的球谐表示上来近似。这些表面运动向量由单独的球谐展开表示。通过球谐展开来表示表面几何形状和表面运动向量,允许对大规模表面运动进行可变分辨率分析和实时显示。该技术已应用于交互式可视化、交互式表面操作和动画制作。