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A High-performance Compact Photoacoustic Tomography System for In Vivo Small-animal Brain Imaging

机译:用于体内小动物脑成像的高性能紧凑型光声层析成像系统

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摘要

In vivo small-animal imaging has an important role to play in preclinical studies. Photoacoustic tomography (PAT) is an emerging hybrid imaging modality that shows great potential for both preclinical and clinical applications. Conventional optical parametric oscillator-based PAT (OPO-PAT) systems are bulky and expensive and cannot provide high-speed imaging. Recently, pulsed-laser diodes (PLDs) have been successfully demonstrated as an alternative excitation source for PAT. Pulsed-laser diode PAT (PLD-PAT) has been successfully demonstrated for high-speed imaging on photoacoustic phantoms and biological tissues. This work provides a visualized experimental protocol for in vivo brain imaging using PLD-PAT. The protocol includes the compact PLD-PAT system configuration and its description, animal preparation for brain imaging, and a typical experimental procedure for 2D cross-sectional rat brain imaging. The PLD-PAT system is compact and cost-effective and can provide high-speed, high-quality imaging. Brain images collected in vivo at various scan speeds are presented.
机译:体内小动物成像在临床前研究中具有重要作用。光声层析成像(PAT)是一种新兴的混合成像方式,在临床前和临床应用中都显示出巨大的潜力。常规的基于光学参量振荡器的PAT(OPO-PAT)系统体积庞大且价格昂贵,无法提供高速成像。最近,脉冲激光二极管(PLD)已被成功地证明是PAT的替代激励源。脉冲激光二极管PAT(PLD-PAT)已成功证明可在光声体模和生物组织上进行高速成像。这项工作为使用PLD-PAT进行体内脑成像提供了可视化的实验方案。该协议包括紧凑的PLD-PAT系统配置及其说明,用于脑成像的动物准备以及用于2D横截面大鼠脑成像的典型实验程序。 PLD-PAT系统结构紧凑且具有成本效益,可以提供高速,高质量的成像。呈现了以各种扫描速度在体内收集的脑图像。

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