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Exploring an optimal wavelet-based filter for cryo-ET imaging

机译:探索用于冷冻ETL成像的基于小波的最佳滤波器

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摘要

Cryo-electron tomography (cryo-ET) is one of the most advanced technologies for the in situ visualization of molecular machines by producing three-dimensional (3D) biological structures. However, cryo-ET imaging has two serious disadvantages—low dose and low image contrast—which result in high-resolution information being obscured by noise and image quality being degraded, and this causes errors in biological interpretation. The purpose of this research is to explore an optimal wavelet denoising technique to reduce noise in cryo-ET images. We perform tests using simulation data and design a filter using the optimum selected wavelet parameters (three-level decomposition, level-1 zeroed out, subband-dependent threshold, a soft-thresholding and spline-based discrete dyadic wavelet transform (DDWT)), which we call a modified wavelet shrinkage filter; this filter is suitable for noisy cryo-ET data. When testing using real cryo-ET experiment data, higher quality images and more accurate measures of a biological structure can be obtained with the modified wavelet shrinkage filter processing compared with conventional processing. Because the proposed method provides an inherent advantage when dealing with cryo-ET images, it can therefore extend the current state-of-the-art technology in assisting all aspects of cryo-ET studies: visualization, reconstruction, structural analysis, and interpretation.
机译:低温电子断层扫描(cryo-ET)是通过产生三维(3D)生物结构在分子机器中进行原位可视化的最先进技术之一。但是,低温-ET成像有两个严重的缺点-低剂量和低图像对比度-导致高分辨率信息被噪声遮盖并且图像质量下降,这会导致生物学解释错误。这项研究的目的是探索一种最佳的小波去噪技术,以减少cryo-ET图像中的噪声。我们使用仿真数据进行测试,并使用最佳选择的小波参数(三级分解,零级归零,与子带相关的阈值,基于软阈值和样条的离散二进小波变换(DDWT))设计滤波器,我们称其为改进的小波收缩滤波器;该滤波器适用于嘈杂的cryo-ET数据。当使用实际的cryo-ET实验数据进行测试时,与常规处理相比,使用改进的小波收缩滤镜处理可以获得更高质量的图像和更准确的生物结构度量。由于所提出的方法在处理cryo-ET图像时具有固有的优势,因此可以扩展当前的最新技术来协助cryo-ET研究的各个方面:可视化,重建,结构分析和解释。

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