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Non-invasive NIR spectroscopy of human brain function during exercise.

机译:运动过程中人脑功能的非侵入性近红外光谱。

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The assessment of physiological changes associated with brain activity has become possible by optical methods, such as near-infrared spectroscopy (NIRS). NIRS is a useful neuroimaging technique based on haemodynamic principles for the non-invasive investigation of brain in motion. Due to its properties, the near-infrared light can penetrate biological tissue reasonably well to assess brain activity and two types of measurements are possible according to the number of channels used: dynamic changes in a localized brain region or functional brain imaging. The theoretical and technological advances of the past 10-15 years have opened the door to a range of applications in the human movement sciences, including some that involve imaging of the adult brain during motor and cognitive tasks, which for many years had been inaccessible to NIRS. This article examines the perturbation methods for measuring cerebral haemodynamic responses within resting and exercise conditions in humans and how NIRS can be used toimage the moving brain. Methodological challenges of NIRS technique are presented, while the advantages and pitfalls of NIRS compared to other neuroimaging methods are discussed. Actual and future uses for NIRS in the field of sport sciences are outlined for a better understanding of brain processes during movement.
机译:通过光学方法,例如近红外光谱(NIRS),可以评估与大脑活动相关的生理变化。 NIRS是一种基于血液动力学原理的有用的神经成像技术,可用于对运动中的大脑进行无创检查。由于其特性,近红外光可以相当好地穿透生物组织以评估大脑活动,根据使用的通道数,可以进行两种类型的测量:局部大脑区域的动态变化或功能性大脑成像。过去10到15年的理论和技术进步为人类运动科学中的一系列应用打开了大门,其中包括涉及运动和认知任务中成年大脑成像的一些应用,而这些多年来却是人们无法获得的。 NIRS。本文探讨了用于测量人在休息和运动条件下的脑血流动力学反应的摄动方法,以及如何使用NIRS对运动中的大脑进行成像。介绍了NIRS技术的方法挑战,同时讨论了NIRS与其他神经成像方法相比的优势和不足。概述了NIRS在体育科学领域的实际和未来用途,以更好地了解运动过程中的大脑过程。

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