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首页> 外文期刊>Journal of near infrared spectroscopy >Functional near infrared optical imaging in cognitive neuroscience: an introductory review
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Functional near infrared optical imaging in cognitive neuroscience: an introductory review

机译:认知神经科学中的功能性近红外光学成像:入门综述

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Cognitive neuroscience is a multidisciplinary field focused on the exploration of the neural substrates underlying cognitive functions; the most remarkable progress in understanding the relationship between brain and cognition has been made with functional brain imaging. Functional near infrared (fNIR) spectroscopy is a non-invasive brain imaging technique that measures the variation of oxygenated and deoxygenated haemoglobin at high temporal resolution. Stemming from the first pioneering experiments, the use of fNIR spectroscopy in cognitive neuroscience has constantly increased. Here, we present a brief review of the fNIR spectroscopy investigations in the cognitive neuroscience field. The topics discussed encompass the classical issues in cognitive neuroscience, such as the exploration of the neural correlates of vision, language, memory, attention and executive functions. Other relevant research topics are introduced in order to show the strengths and the limitations of fNIR spectroscopy, as well as its potential in the biomedical field. This review is intended to provide a general view of the wide variety of optical imaging applications in the field of cognitive neuroscience. The increasing body of studies and the constant technical improvement suggest that fNIR spectroscopy is a versatile and promising instrument to investigate the neural correlates of human cognition.
机译:认知神经科学是一个多学科领域,致力于探索认知功能背后的神经基质。功能性脑成像在了解大脑与认知之间的关系方面取得了最显着的进步。功能性近红外(fNIR)光谱技术是一种非侵入性的大脑成像技术,可在高时间分辨率下测量氧化性和脱氧性血红蛋白的变化。从最初的开创性实验开始,fNIR光谱在认知神经科学中的应用一直在增加。在这里,我们简要介绍认知神经科学领域的fNIR光谱学研究。讨论的主题涵盖认知神经科学中的经典问题,例如对视觉,语言,记忆,注意力和执行功能的神经相关性的探索。为了说明fNIR光谱的优势和局限性及其在生物医学领域的潜力,我们引入了其他相关的研究主题。这篇综述旨在提供认知神经科学领域中各种光学成像应用的一般视图。越来越多的研究和不断的技术进步表明,fNIR光谱学是研究人类认知的神经相关性的一种多功能且有前途的工具。

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