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Straight lines of neutron scattering in biology: A review of basic controls in SANS and EINS (Review)

机译:生物学中的中子散射直线:SANS和EINS的基本控制方法综述(综述)

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摘要

Neutron and X-ray beams in scattering experiments have similar wavelengths and explore the same length scale (*1 A or 0.1 nm). Data collection and analysis are also broadly similar for both radiation types. There are fundamental differences, however, between the interaction of X-rays and neutrons with matter, which makes them strongly complementary for structural studies in biology. The property of neutrons to distinguish natural abundance hydrogen from its deuterium isotope and the dispersion relation that leads to the energy of *1 A neutrons being of the order of thermal energy are well known. They form the basis, respectively, of contrast variation on the one hand and energy-resolved scattering experiments to study macromolecular dynamics-neutron-specific scattering methods on the other. Interestingly, analysis procedures for the structural and dynamics experiments display common aspects that can be expressed as straight-line relationships. These not only act as controls of good sample preparation, but also yield model-free parameters on an absolute scale that provide fundamental information on the structure and dynamics of the system under study.
机译:散射实验中的中子束和X射线束具有相似的波长,并探索相同的长度尺度(* 1 A或0.1 nm)。两种辐射类型的数据收集和分析也大致相似。但是,X射线和中子与物质的相互作用之间存在根本差异,这使它们成为生物学结构研究的有力补充。中子从其氘同位素中区分天然丰度氢的性质和导致* 1 A能量为热能数量级的色散关系是众所周知的。它们一方面构成了对比度变化的基础,另一方面又构成了能量分辨散射实验,以研究大分子动力学-中子特异性散射方法。有趣的是,结构和动力学实验的分析过程显示了可以表示为直线关系的共同方面。这些不仅可以作为良好样品制备的对照,而且可以在绝对规模上生成无模型参数,这些参数可以提供有关所研究系统的结构和动力学的基本信息。

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