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WinLALS是一款用于在Windows个人电脑上对螺旋聚合物进行连接原子最小二乘精修的程序。

WinLALS for a linked-atom least-square refinement program for helical polymers on WINDOWS PCs.

作者信息

Okada Kenji, Noguchi Keiichi, Okuyama Kenji, Arnott Struther

机构信息

Technical Career Development Center, Research and Development Center, Ricoh Co. Ltd., Shin-Yokohama 3-2-3, Kohoku-ku, Yokohama 222-8530, Japan.

出版信息

Comput Biol Chem. 2003 Jul;27(3):265-85. doi: 10.1016/s0097-8485(02)00076-1.

Abstract

Fiber diffraction dada from polymers are sufficiently different in kind and quantity from single crystal data as to warrant analyses with a different emphasis: refinement of competing molecular models where torsion angles and bond angles are the explicit variables rather than atomic coordinates. The first linked-atom least-squares (LALS) refinement program had been devolved at Arnott's laboratories at King's College London [Arnott, S., Wonacott, A.J., 1966a. Polymer 7, 157] on mainframe and several revised versions were maintained at Purdue University [Smith, P.J.C., Arnott, S., 1978. Acta Crystallogr. Sect. A 34, 3; Chandrasekan, R. 2000. LALS Users Manual, Whistler Centre for Carbohydrate Researchm Purdue University, West Lafayette, IN] on workstation. Today the LALS users have to choose correctly any one program that they want to use, trigonometric or Bessel functions, from some versions. To develop a new WinLALS program based on the dimensioned version of the latest LALS2000 program [LALS Users Manual (2000)], we reviewed all the mathematical expressions and corrected the optimization of the non-bonded atomic contact terms. The WinLALS is coded with FORTRAN 90 and runs on MICROSOFT-WINDOWS PCs and the many amendments including changing input/output assignments, expanding array sizes, arranging that the update files have all output parameters of each cycle, and correcting several bugs are performed. This paper describes the mathematical expressions in detail employed in WinLALS and compares results of its applications obtained with those obtained earlier.

摘要

聚合物的纤维衍射数据在种类和数量上与单晶数据有很大不同,因此需要进行侧重点不同的分析:即对相互竞争的分子模型进行精修,其中扭转角和键角是明确的变量而非原子坐标。首个连接原子最小二乘法(LALS)精修程序是在伦敦国王学院阿诺特实验室的大型机上开发的[阿诺特,S.,沃纳科特,A.J.,1966年a。《聚合物》7,157],普渡大学[史密斯,P.J.C.,阿诺特,S.,1978年。《晶体学报》A辑34,3;钱德拉塞卡恩,R.,2000年。《LALS用户手册》,惠斯勒碳水化合物研究中心,普渡大学,西拉斐特,印第安纳州]在工作站上维护了几个修订版本。如今,LALS用户必须从某些版本中正确选择他们想要使用的任何一个程序,无论是三角函数还是贝塞尔函数版本。为了基于最新的LALS2000程序的维数版本[《LALS用户手册》(2000年)]开发一个新的WinLALS程序,我们审查了所有数学表达式并修正了非键合原子接触项的优化。WinLALS用FORTRAN 90编码,在微软视窗个人电脑上运行,并进行了许多修改,包括更改输入/输出赋值、扩大数组大小、确保更新文件包含每个循环的所有输出参数以及修正几个错误。本文详细描述了WinLALS中使用的数学表达式,并将其应用结果与早期获得的结果进行了比较。

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