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首页> 外文期刊>Acta crystallographica. Section A, Foundations and advances. >Ab initio reconstruction from one-dimensional crystal diffraction data
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Ab initio reconstruction from one-dimensional crystal diffraction data

机译:从一维从头开始重建晶体衍射数据

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摘要

Filamentary and rod-like assemblies are ubiquitous in biological systems, and single such assemblies can form one-dimensional (1D) crystals. New, intense X-ray sources, such as X-ray free-electron lasers, make it feasible to measure diffraction data from single 1D crystals. Such experiments would present some advantages, since cylindrical averaging of the diffraction data in conventional fiber diffraction analysis is avoided, there is coherent signal amplification relative to single-particle imaging, and the diffraction data are oversampled compared with those from a 3D crystal so that the phase problem is better determined than for a 3D crystal [Millane (2017). Acta Cryst. A73, 140-150]. Phasing of 1D crystal diffraction data is examined, by simulation, using an iterative projection algorithm. Ab initio phasing is feasible with realistic noise levels and little envelope information is required if a shrink-wrap algorithm is also incorporated. Some practical aspects of the proposed experiments are explored.
机译:细丝的和棒状总成无处不在在生物系统,单这些程序集可以形成一维(1 d)晶体。强烈的x射线源,如x射线自由电子激光器,使其可行的措施从单一的1 d晶体衍射数据。实验存在一些优势,因为圆柱形的平均衍射数据常规纤维衍射分析避免,相干信号放大相对于单粒子成像,衍射数据采样过量相比那些来自3 d晶体这相位问题比3 d晶体更好的决定呢定相的1 d晶体衍射数据检查,通过仿真,使用一个迭代投影算法。可行的现实的噪音水平和小如果一个压缩信封信息是必需的算法也成立。方面的实验探索。

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