Xu Hongliang, Hauptman Herbert A
Hauptman-Woodward Medical Research Institute and Department of Structural Biology, School of Medicine and Biomedical Sciences, State University of New York at Buffalo, 73 High Street, Buffalo, NY 14203, USA.
Acta Crystallogr A. 2004 Mar;60(Pt 2):153-7. doi: 10.1107/S0108767304000224. Epub 2004 Feb 17.
The minimal function and its minimal principle employed in the traditional Shake-and-Bake algorithm rely on the probabilistic estimates of the cosines of the structure invariants. In this paper, a novel statistical approach to the phase problem, which utilizes statistical properties of the structure invariants, is proposed. The statistical maximal function and its maximal principle are formulated, and the corresponding statistical Shake-and-Bake algorithm and its associated statistical parameter-shift procedure are proposed and tested. The test results show that the statistical approach to the phase problem is a simple, reliable, less computationally intensive and more efficient procedure for phase determination in X-ray crystallography.
传统的“摇晃烘焙”算法中使用的最小函数及其最小原理依赖于结构不变量余弦值的概率估计。本文提出了一种解决相位问题的新颖统计方法,该方法利用结构不变量的统计特性。阐述了统计最大函数及其最大原理,并提出并测试了相应的统计“摇晃烘焙”算法及其相关的统计参数偏移程序。测试结果表明,解决相位问题的统计方法是一种用于X射线晶体学相位确定的简单、可靠、计算量较小且效率更高的程序。