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基于平行相移数字全息术的模块化显微镜,用于活生物样本成像。

Modularized microscope based on parallel phase-shifting digital holography for imaging of living biospecimens.

机构信息

Kyoto Institute of Technology, Graduate School of Science and Technology, Kyoto, Japan.

Japan Society for the Promotion of Science, Tokyo, Japan.

出版信息

J Biomed Opt. 2020 Dec;25(12). doi: 10.1117/1.JBO.25.12.123706.

Abstract

SIGNIFICANCE

Parallel phase-shifting digital holographic microscope (PPSDHM) is powerful for three-dimensional (3D) measurements of dynamic specimens. However, the PPSDHM reported previously was directly fixed on the optical bench and imposed difficulties case, thus it is required to modify the specification of the microscope or transport the microscope to another location.

AIM

We present a modularized PPSDHM. We construct the proposed PPSDHM and demonstrate the 3D measurement capability of the PPSDHM.

APPROACH

The PPSDHM was designed as an inverted microscope to record transparent objects and modularized by integrating the optical elements of the PPSDHM on an optical breadboard. To demonstrate the effectiveness of the PPSDHM, we recorded a 3D motion-picture of moving Volvoxes at 1000  frames  /  s and carried out 3D tracking of the Volvoxes.

RESULTS

The PPSDHM was practically realized and 3D images of objects were successfully reconstructed from holograms recorded with a single-shot exposure. The 3D trajectories of Volvoxes were obtained from the reconstructed images.

CONCLUSIONS

We established a modularized PPSDHM that is capable of 3D image acquisition by integrating the optical elements of the PPSDHM on an optical breadboard. The recording capability of 3D motion-pictures of dynamic specimens was experimentally demonstrated by the PPSDHM.

摘要

意义

平行相移数字全息显微镜(PPSDHM)对于动态样本的三维(3D)测量非常强大。然而,以前报道的 PPSDHM 直接固定在光学台上,带来了困难,因此需要修改显微镜的规格或将显微镜运输到另一个位置。

目的

我们提出了一种模块化的 PPSDHM。我们构建了所提出的 PPSDHM,并演示了 PPSDHM 的 3D 测量能力。

方法

PPSDHM 被设计为倒置显微镜,用于记录透明物体,并通过将 PPSDHM 的光学元件集成在光学面包板上来实现模块化。为了演示 PPSDHM 的有效性,我们以 1000 帧/秒的速度记录了移动 Volvox 的 3D 运动图像,并对 Volvox 进行了 3D 跟踪。

结果

PPSDHM 实际实现,并且从单次曝光记录的全息图成功重建了物体的 3D 图像。从重建的图像中获得了 Volvox 的 3D 轨迹。

结论

我们建立了一种模块化的 PPSDHM,通过将 PPSDHM 的光学元件集成在光学面包板上,能够进行 3D 图像采集。通过 PPSDHM 实验证明了对动态样本的 3D 运动图像的记录能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2030/7716092/1e09af644c9d/JBO-025-123706-g001.jpg

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