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通过卷积滤波对电子顺磁共振谱进行后处理:谐波序列的计算以及自旋标记电子顺磁共振谱中快速运动成分的自动分离。

Post-processing of EPR spectra by convolution filtering: calculation of a harmonics' series and automatic separation of fast-motion components from spin-label EPR spectra.

作者信息

Smirnov Alex I

机构信息

Department of Chemistry, North Carolina State University, Raleigh, NC 27695-8204, USA.

出版信息

J Magn Reson. 2008 Jan;190(1):154-9. doi: 10.1016/j.jmr.2007.10.006. Epub 2007 Oct 14.

Abstract

This communication reports on post-processing of continuous wave EPR spectra by a digital convolution with filter functions that are subjected to differentiation or the Kramers-Krönig transform analytically. In case of differentiation, such a procedure improves spectral resolution in the higher harmonics enhancing the relative amplitude of sharp spectral features over the broad lines. At the same time high-frequency noise is suppressed through filtering. These features are illustrated on an example of a Lorentzian filter function that has a principal advantage of adding a known magnitude of homogeneous broadening to the spectral shapes. Such spectral distortion could be easily and accurately accounted for in the consequent least-squares data modeling. Application examples include calculation of higher harmonics from pure absorption echo-detected EPR spectra and resolving small hyperfine coupling that are unnoticeable in conventional first derivative EPR spectra. Another example involves speedy and automatic separation of fast and broad slow-motion components from spin-label EPR spectra without explicit simulation of the slow motion spectrum. The method is illustrated on examples of X-band EPR spectra of partially aggregated membrane peptides.

摘要

本通讯报道了通过与经过解析微分或克莱默斯-克勒尼希变换的滤波器函数进行数字卷积对连续波电子顺磁共振(EPR)谱进行后处理的方法。在微分的情况下,这种方法提高了高次谐波中的光谱分辨率,增强了尖锐光谱特征相对于宽线的相对幅度。同时,通过滤波抑制了高频噪声。这些特性在洛伦兹滤波器函数的例子中得到了说明,该函数的主要优点是在光谱形状上增加了已知大小的均匀展宽。在随后的最小二乘数据建模中,可以很容易且准确地考虑这种光谱失真。应用实例包括从纯吸收回波检测的EPR谱计算高次谐波,以及解析在传统一阶导数EPR谱中不明显的小超精细耦合。另一个例子是从自旋标记EPR谱中快速自动分离快速和宽的慢运动成分,而无需对慢运动谱进行显式模拟。该方法在部分聚集的膜肽的X波段EPR谱的例子中得到了说明。

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