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Imaging Brain Function with Functional Near-Infrared Spectroscopy in Unconstrained Environments

机译:在不受限制的环境中使用功能性近红外光谱对脑功能进行成像

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摘要

Assessing the neural correlates of motor and cognitive processes under naturalistic experimentation is challenging due to the movement constraints of traditional brain imaging technologies. The recent advent of portable technologies that are less sensitive to motion artifacts such as Functional Near Infrared Spectroscopy (fNIRS) have been made possible the study of brain function in freely-moving participants. In this paper, we describe a series of proof-of-concept experiments examining the potential of fNIRS in assessing the neural correlates of cognitive and motor processes in unconstrained environments. We show illustrative applications for practicing a sport (i.e., table tennis), playing a musical instrument (i.e., piano and violin) alone or in duo and performing daily activities for many hours (i.e., continuous monitoring). Our results expand upon previous research on the feasibility and robustness of fNIRS to monitor brain hemodynamic changes in different real life settings. We believe that these preliminary results showing the flexibility and robustness of fNIRS measurements may contribute by inspiring future work in the field of applied neuroscience.
机译:由于传统脑成像技术的运动限制,在自然主义实验下评估运动和认知过程的神经相关性具有挑战性。对运动伪影(例如功能近红外光谱法(fNIRS))不太敏感的便携式技术的最新出现使得研究自由运动参与者的大脑功能成为可能。在本文中,我们描述了一系列概念验证实验,旨在检验fNIRS在评估无约束环境中认知和运动过程的神经相关性方面的潜力。我们展示了一些示例性应用程序,这些应用程序可用于练习一项运动(即乒乓球),单独或组合演奏一种乐器(即钢琴和小提琴)以及进行许多小时的日常活动(即连续监控)。我们的结果扩展了以前关于fNIRS监测不同现实生活环境中脑血流动力学变化的可行性和鲁棒性的研究。我们相信这些显示fNIRS测量的灵活性和鲁棒性的初步结果可能会激发启发性应用神经科学领域的未来工作。

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