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使用成对相关图对小鼠视网膜光刺激的皮质反应进行无标记光声计算机断层扫描。

Label-free photoacoustic computed tomography of mouse cortical responses to retinal photostimulation using a pair-wise correlation map.

作者信息

Chang Kai-Wei, Zhu Yunhao, Wang Xueding, Wong Kwoon Y, Xu Guan

机构信息

Department of Biomedical Engineering, University of Michigan, Ann Arbor, Michigan 48105, USA.

Department of Electronic Science and Engineering, Nanjing University, Nanjing 210093, China.

出版信息

Biomed Opt Express. 2022 Jan 28;13(2):1017-1025. doi: 10.1364/BOE.446990. eCollection 2022 Feb 1.

Abstract

The lack of a non-invasive or minimally invasive imaging technique has long been a challenge to investigating brain activities in mice. Functional magnetic resonance imaging and the more recently developed diffuse optical imaging both suffer from limited spatial resolution. Photoacoustic (PA) imaging combines the sensitivity of optical excitation to hemodynamic changes and ultrasound detection's relatively high spatial resolution. In this study, we evaluated the feasibility of using a label-free, real-time PA computed tomography (PACT) system to measure visually evoked hemodynamic responses within the primary visual cortex (V1) in mice. Photostimulation of the retinas evoked significantly faster and stronger V1 responses in wild-type mice than in age-matched rod/cone-degenerate mice, consistent with known differences between rod/cone- vs. melanopsin-mediated photoreception. In conclusion, the PACT system in this study has sufficient sensitivity and spatial resolution to resolve visual cortical hemodynamics during retinal photostimulation, and PACT is a potential tool for investigating visually evoked brain activities in mouse models of retinal diseases.

摘要

长期以来,缺乏非侵入性或微创成像技术一直是研究小鼠大脑活动的一项挑战。功能磁共振成像以及最近开发的扩散光学成像都存在空间分辨率有限的问题。光声(PA)成像结合了光学激发对血流动力学变化的敏感性和超声检测相对较高的空间分辨率。在本研究中,我们评估了使用无标记实时光声计算机断层扫描(PACT)系统测量小鼠初级视觉皮层(V1)内视觉诱发血流动力学反应的可行性。视网膜光刺激在野生型小鼠中诱发的V1反应比年龄匹配的视杆/视锥退化小鼠更快、更强,这与视杆/视锥介导与黑视蛋白介导的光感受之间已知的差异一致。总之,本研究中的PACT系统具有足够的灵敏度和空间分辨率,能够在视网膜光刺激期间解析视觉皮层血流动力学,并且PACT是研究视网膜疾病小鼠模型中视觉诱发脑活动的潜在工具。

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