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Application of Functional Near-Infrared Spectroscopy to the Study of Brain Function in Humans and Animal Models

机译:功能近红外光谱在人类和动物模型脑功能研究中的应用

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摘要

Functional near-infrared spectroscopy (fNIRS) is a noninvasive optical imaging technique that indirectly assesses neuronal activity by measuring changes in oxygenated and deoxygenated hemoglobin in tissues using near-infrared light. fNIRS has been used not only to investigate cortical activity in healthy human subjects and animals but also to reveal abnormalities in brain function in patients suffering from neurological and psychiatric disorders and in animals that exhibit disease conditions. Because of its safety, quietness, resistance to motion artifacts, and portability, fNIRS has become a tool to complement conventional imaging techniques in measuring hemodynamic responses while a subject performs diverse cognitive and behavioral tasks in test settings that are more ecologically relevant and involve social interaction. In this review, we introduce the basic principles of fNIRS and discuss the application of this technique in human and animal studies.
机译:功能性近红外光谱(fNIRS)是一种非侵入式光学成像技术,可通过使用近红外光测量组织中氧化和脱氧血红蛋白的变化来间接评估神经元活动。 fNIRS不仅用于研究健康人类受试者和动物的皮层活动,而且还用于揭示患有神经系统疾病和精神疾病的患者以及表现出疾病状况的动物的脑功能异常。由于其安全性,安静性,对运动伪影的抵抗力和便携性,fNIRS已成为补充传统成像技术以测量血液动力学反应的工具,而受试者在测试环境中执行的各种认知和行为任务与生态学相关性更强并且涉及社会互动。在本文中,我们介绍了fNIRS的基本原理,并讨论了该技术在人类和动物研究中的应用。

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