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用于动态生物样本高速体积成像的单次光学投影断层扫描技术。

Single-shot optical projection tomography for high-speed volumetric imaging of dynamic biological samples.

作者信息

Darling Connor, Davis Samuel P X, Kumar Sunil, French Paul M W, McGinty James

机构信息

Photonics Group, Department of Physics, Imperial College London, London, UK.

Francis Crick Institute, London, UK.

出版信息

J Biophotonics. 2023 Feb;16(2):e202200232. doi: 10.1002/jbio.202200232. Epub 2022 Sep 29.

Abstract

A single-shot adaptation of Optical Projection Tomography (OPT) for high-speed volumetric snapshot imaging of dynamic mesoscopic biological samples is presented. Conventional OPT has been applied to in vivo imaging of animal models such as D. rerio, but the sequential acquisition of projection images typically requires samples to be immobilized during the acquisition. A proof-of-principle system capable of single-shot tomography of a ~1 mm volume is presented, demonstrating camera-limited rates of up to 62.5 volumes/s, which has been applied to 3D imaging of a freely swimming zebrafish embryo. This is achieved by recording eight projection views simultaneously on four low-cost CMOS cameras. With no stage required to rotate the sample, this single-shot OPT system can be implemented with a component cost of under £5000. The system design can be adapted to different sized fields of view and may be applied to a broad range of dynamic samples, including high throughput flow cytometry applied to model organisms and fluid dynamics studies.

摘要

本文介绍了一种光学投影断层扫描(OPT)的单次成像方法,用于对动态介观生物样本进行高速体积快照成像。传统的OPT已应用于诸如斑马鱼等动物模型的体内成像,但投影图像的顺序采集通常要求样本在采集过程中保持固定。本文展示了一个原理验证系统,该系统能够对约1立方毫米的体积进行单次断层扫描,显示出高达62.5体积/秒的相机限制速率,已应用于自由游动的斑马鱼胚胎的三维成像。这是通过在四个低成本互补金属氧化物半导体(CMOS)相机上同时记录八个投影视图来实现的。由于无需旋转样本的平台,这种单次OPT系统的组件成本可控制在5000英镑以下。该系统设计可适应不同尺寸的视野,并可应用于广泛的动态样本,包括应用于模式生物的高通量流式细胞术和流体动力学研究。

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