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首页> 外文期刊>Journal of Structural Biology >Tuning of the Zernike phase-plate for visualization of detailed ultrastructure in complex biological specimens
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Tuning of the Zernike phase-plate for visualization of detailed ultrastructure in complex biological specimens

机译:Zernike相板的调整,可显示复杂生物标本中的详细超微结构

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摘要

In order to acquire phase-contrast images with adequate contrast, conventional TEM requires large amount of defocus. Increasing the defocus improves the low-frequency components but attenuates the high-frequency ones. On the other hand, Zernike phase-contrast TEM (ZPC-TEM) can recover low-frequency components without losing the high-frequency ones under in-focus conditions. ZPC-TEM however, has another problem, especially in imaging of complex biological specimens such as cells and tissues; strong halos appear around specimen structures, and these halos hinder the interpretation of images. Due to this problem, the application of ZPC-TEM has been restricted to imaging of smaller particles. In order to improve the halo appearance, we fabricated a new quarter-wave thin film phase-plate with a smaller central hole and tested it on vitreous biological specimens. ZPC-TEM with the new plate could successfully visualize, in in-focus images, the intracellular fine features of cultured cells and brain tissues. This result indicates that reduction of the central hole diameter makes ZPC-TEM applicable on size scales ranging from protein particles to tissue sections. The application of ZPC-TEM to vitreous biological specimens will be a powerful method to advance the new field of imaging science for ultrastructures in close-to-physiological state.
机译:为了获得具有足够对比度的相位对比图像,常规TEM需要大量散焦。增加散焦会改善低频分量,但会衰减高频分量。另一方面,在聚焦条件下,Zernike相衬TEM(ZPC-TEM)可以恢复低频分量,而不会丢失高频分量。然而,ZPC-TEM还存在另一个问题,特别是在复杂的生物标本(如细胞和组织)成像中;标本结构周围会出现强烈的光晕,这些光晕阻碍了图像的解释。由于这个问题,ZPC-TEM的应用仅限于较小颗粒的成像。为了改善光环外观,我们制作了一个新的具有较小中心孔的四分之一波薄膜相位板,并在玻璃生物标本上进行了测试。装有新板的ZPC-TEM可以在聚焦图像中成功地可视化培养细胞和脑组织的细胞内精细特征。该结果表明,中心孔直径的减小使ZPC-TEM适用于从蛋白质颗粒到组织切片的尺寸范围。 ZPC-TEM在玻璃体生物标本中的应用将成为一种在接近生理状态下推进超微结构成像科学新领域的有力方法。

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