Herold Fabian, Wiegel Patrick, Scholkmann Felix, Thiers Angelina, Hamacher Dennis, Schega Lutz
Otto von Guericke University Magdeburg, Institute III, Department of Sport Science, Magdeburg, Germany.
University of Freiburg, Department of Sport Science, Freiburg, Germany.
Neurophotonics. 2017 Oct;4(4):041403. doi: 10.1117/1.NPh.4.4.041403. Epub 2017 Aug 1.
Safe locomotion is a crucial aspect of human daily living that requires well-functioning motor control processes. The human neuromotor control of daily activities such as walking relies on the complex interaction of subcortical and cortical areas. Technical developments in neuroimaging systems allow the quantification of cortical activation during the execution of motor tasks. Functional near-infrared spectroscopy (fNIRS) seems to be a promising tool to monitor motor control processes in cortical areas in freely moving subjects. However, so far, there is no established standardized protocol regarding the application and data processing of fNIRS signals that limits the comparability among studies. Hence, this systematic review aimed to summarize the current knowledge about application and data processing in fNIRS studies dealing with walking or postural tasks. Fifty-six articles of an initial yield of 1420 publications were reviewed and information about methodology, data processing, and findings were extracted. Based on our results, we outline the recommendations with respect to the design and data processing of fNIRS studies. Future perspectives of measuring fNIRS signals in movement science are discussed.
安全移动是人类日常生活的一个关键方面,它需要正常运作的运动控制过程。人类对诸如行走等日常活动的神经运动控制依赖于皮层下和皮层区域的复杂相互作用。神经成像系统的技术发展使得在执行运动任务期间能够对皮层激活进行量化。功能近红外光谱(fNIRS)似乎是一种很有前景的工具,可用于监测自由移动受试者皮层区域的运动控制过程。然而,到目前为止,关于fNIRS信号的应用和数据处理还没有既定的标准化方案,这限制了研究之间的可比性。因此,本系统综述旨在总结当前关于fNIRS研究中处理行走或姿势任务的应用和数据处理的知识。对从1420篇出版物的初始产出中筛选出的56篇文章进行了综述,并提取了有关方法、数据处理和研究结果的信息。基于我们的结果,我们概述了关于fNIRS研究的设计和数据处理的建议。还讨论了运动科学中测量fNIRS信号的未来前景。