Principles, techniques, and limitations of near infrared spectroscopy.

Marco Ferrari, Leonardo Mottola, Valentina Quaresima
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引用次数: 945

Abstract

In the last decade the study of the human brain and muscle energetics underwent a radical change, thanks to the progressive introduction of noninvasive techniques, including near-infrared (NIR) spectroscopy (NIRS). This review summarizes the most recent literature about the principles, techniques, advantages, limitations, and applications of NIRS in exercise physiology and neuroscience. The main NIRS instrumentations and measurable parameters will be reported. NIR light (700-1000 m) penetrates superficial layers (skin, subcutaneous fat, skull, etc.) and is either absorbed by chromophores (oxy- and deoxyhemoglobin and myoglobin) or scattered within the tissue. NIRS is a noninvasive and relatively low-cost optical technique that is becoming a widely used instrument for measuring tissue O2 saturation, changes in hemoglobin volume and, indirectly, brain/muscle blood flow and muscle O2 consumption. Tissue O2 saturation represents a dynamic balance between O2 supply and O2 consumption in the small vessels such as the capillary, arteriolar, and venular bed. The possibility of measuring the cortical activation in response to different stimuli, and the changes in the cortical cytochrome oxidase redox state upon O2 delivery changes, will also be mentioned.

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近红外光谱的原理、技术和局限性。
在过去的十年中,由于包括近红外(NIR)光谱(NIRS)在内的非侵入性技术的逐步引入,人类大脑和肌肉能量学的研究经历了根本性的变化。本文综述了近红外光谱在运动生理学和神经科学中的原理、技术、优势、局限性和应用等方面的最新文献。报告了主要的近红外光谱仪器和可测量参数。近红外光(700-1000米)穿透浅层(皮肤、皮下脂肪、头骨等),要么被发色团(含氧和脱氧血红蛋白和肌红蛋白)吸收,要么分散在组织内。近红外光谱(NIRS)是一种无创且成本相对较低的光学技术,已成为广泛用于测量组织氧饱和度、血红蛋白体积变化以及间接测量脑/肌肉血流量和肌肉氧消耗的仪器。组织氧饱和度代表小血管(如毛细血管、小动脉和小静脉床)的氧供应和耗氧量之间的动态平衡。还将提到测量皮层在不同刺激下的激活的可能性,以及皮层细胞色素氧化酶氧化还原状态在氧气输送变化时的变化。
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