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释放功能近红外光谱技术在脑科学领域的未来潜力。

Unleashing the future potential of functional near-infrared spectroscopy in brain sciences.

作者信息

Cutini Simone, Brigadoi Sabrina

机构信息

Department of Developmental Psychology, University of Padova, Italy; Centre for Cognitive Neuroscience, University of Padova, Italy.

Department of Developmental Psychology, University of Padova, Italy.

出版信息

J Neurosci Methods. 2014 Jul 30;232:152-6. doi: 10.1016/j.jneumeth.2014.05.024. Epub 2014 May 29.

Abstract

The wondrous innovations bound to the introduction of functional near-infrared spectroscopy in cognitive neuroscience are characterized by a multifaceted nature, ranging from technological improvements to sophisticated signal processing methods; the outstanding progress enabled scientists to investigate a variety of hard-to-test clinical populations and to successfully employ optical imaging in fields that were almost unimaginable twenty years ago. Here we illustrate how the emerging use of fNIRS methodologies might represent a drawing power in a variety of challenging experimental and medical contexts; we expect in the near future a wide increase of the use of wireless fNIRS, especially in children and in particular clinical populations, as well as a striking progress of fNIRS-BCI and hybrid BCI systems for neurofeedback and neurorehabilitation. These emerging trends might dramatically foster the future potential of fNIRS in brain sciences, provided that they are properly supported by a significant progress in signal processing and cognitive neuroscience.

摘要

认知神经科学中功能性近红外光谱技术的引入所带来的奇妙创新具有多方面的特点,从技术改进到复杂的信号处理方法;这一显著进展使科学家能够研究各种难以测试的临床群体,并在二十年前几乎无法想象的领域成功应用光学成像技术。在此,我们阐述了功能性近红外光谱技术方法的新兴应用如何在各种具有挑战性的实验和医学背景中展现出吸引力;我们预计在不久的将来,无线功能性近红外光谱技术的应用将大幅增加,尤其是在儿童及特定临床群体中,同时功能性近红外光谱技术-脑机接口以及用于神经反馈和神经康复的混合脑机接口系统也将取得显著进展。倘若这些新兴趋势能在信号处理和认知神经科学方面取得重大进展的适当支持,那么它们可能会极大地提升功能性近红外光谱技术在脑科学领域的未来潜力。

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