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基于自由空间光传输和 MEMS 扫描镜的多尺度高速光声显微镜。

Multiscale high-speed photoacoustic microscopy based on free-space light transmission and a MEMS scanning mirror.

出版信息

Opt Lett. 2020 Aug 1;45(15):4312-4315. doi: 10.1364/OL.397733.

Abstract

The conventional photoacoustic microscopy (PAM) system allows trade-offs between lateral resolution and imaging depth, limiting its applications in biological imaging in vivo. Here we present an integrated optical-resolution (OR) and acoustic-resolution (AR) multiscale PAM based on free-space light transmission and fast microelectromechanical systems (MEMS) scanning. The lateral resolution for OR is 4.9 µm, and the lateral resolution for AR is 114.5 µm. The maximum imaging depth for OR is 0.7 mm, and the maximum imaging depth for AR is 4.1 mm. The imaging speed can reach 50 k Alines per second. The high signal-to-noise ratios and wavelength throughput are achieved by delivering light via free-space, and the high speed is achieved by a MEMS scanning mirror. The blood vasculature from superficial skin to the deep tissue of a mouse leg was imaged in vivo using two different resolutions to demonstrate the multiscale imaging capability.

摘要

传统的光声显微镜(PAM)系统允许在横向分辨率和成像深度之间进行权衡,限制了其在生物体内成像中的应用。在这里,我们提出了一种基于自由空间光传输和快速微机电系统(MEMS)扫描的集成光学分辨率(OR)和声学分辨率(AR)多尺度 PAM。OR 的横向分辨率为 4.9 µm,AR 的横向分辨率为 114.5 µm。OR 的最大成像深度为 0.7 mm,AR 的最大成像深度为 4.1 mm。成像速度可达 50 k 行/秒。通过自由空间传输光实现了高信噪比和波长透过率,通过 MEMS 扫描镜实现了高速。使用两种不同的分辨率对小鼠腿部的浅表皮肤和深层组织的血管进行了体内成像,以展示多尺度成像能力。

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