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实时成像活细胞的独特调制瞳孔功能系统。

Distinct modulated pupil function system for real-time imaging of living cells.

机构信息

RIKEN Quantitative Biology Center, 6-2-3 Furuedai, Suita, Osaka, Japan.

出版信息

PLoS One. 2012;7(9):e44028. doi: 10.1371/journal.pone.0044028. Epub 2012 Sep 4.

Abstract

Optical microscopy is one of the most contributive tools for cell biology in the past decades. Many microscopic techniques with various functions have been developed to date, i.e., phase contrast microscopy, differential interference contrast (DIC) microscopy, confocal microscopy, two photon microscopy, superresolution microscopy, etc. However, person who is in charge of an experiment has to select one of the several microscopic techniques to achieve an experimental goal, which makes the biological assay time-consuming and expensive. To solve this problem, we have developed a microscopic system with various functions in one instrument based on the optical Fourier transformation with a lens system for detection while focusing on applicability and user-friendliness for biology. The present instrument can arbitrarily modulate the pupil function with a micro mirror array on the Fourier plane of the optical pathway for detection. We named the present instrument DiMPS (Distinct optical Modulated Pupil function System). The DiMPS is compatible with conventional fluorescent probes and illumination equipment, and gives us a Fourier-filtered image, a pseudo-relief image, and a deep focus depth. Furthermore, DiMPS achieved a resolution enhancement (pseudo-superresolution) of 110 nm through the subtraction of two images whose pupil functions are independently modulated. In maximum, the spatial and temporal resolution was improved to 120 nm and 2 ms, respectively. Since the DiMPS is based on relay optics, it can be easily combined with another microscopic instrument such as confocal microscope, and provides a method for multi-color pseudo-superresolution. Thus, the DiMPS shows great promise as a flexible optical microscopy technique in biological research fields.

摘要

光学显微镜是过去几十年中对细胞生物学最有贡献的工具之一。迄今为止,已经开发出了许多具有各种功能的显微镜技术,例如相差显微镜、微分干涉差(DIC)显微镜、共聚焦显微镜、双光子显微镜、超分辨率显微镜等。然而,负责实验的人必须从几种显微镜技术中选择一种来实现实验目标,这使得生物测定既耗时又昂贵。为了解决这个问题,我们基于透镜系统的光学傅里叶变换,开发了一种具有多种功能的显微镜系统,重点关注适用性和用户友好性,适用于生物学。该仪器可以在光路的傅里叶平面上使用微镜阵列任意调制光瞳函数。我们将该仪器命名为 DiMPS(独特光学调制光瞳功能系统)。DiMPS 与传统荧光探针和照明设备兼容,可提供傅里叶滤波图像、伪浮雕图像和深聚焦深度。此外,通过独立调制两个光瞳函数的图像相减,DiMPS 实现了分辨率增强(伪超分辨率),达到 110nm。最大空间和时间分辨率分别提高到 120nm 和 2ms。由于 DiMPS 基于中继光学,因此可以轻松与共聚焦显微镜等其他显微镜仪器结合,并提供多色伪超分辨率的方法。因此,DiMPS 作为一种灵活的光学显微镜技术,在生物研究领域具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/652e/3433489/b46e7e990385/pone.0044028.g001.jpg

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