Laboratory for Brain Recovery and Function, Dalhousie University, Halifax, Nova Scotia, Canada.
Axem Neurotechnology, Halifax, Nova Scotia, Canada.
PLoS One. 2022 Jul 14;17(7):e0269654. doi: 10.1371/journal.pone.0269654. eCollection 2022.
This study's purpose is to characterize the performance of a prototype functional near-infrared spectroscopy (fNIRS) headband meant to enable quick and easy measurements from the sensorimotor cortices. The fact that fNIRS is well-suited to ergonomic designs (i.e., their ability to be made wireless, their relative robustness to movement artifacts among other characteristics) has resulted in many recent examples of novel ergonomic fNIRS systems; however, the optical nature of fNIRS measurement presents an inherent challenge to measurement at areas of the brain underlying haired parts of the head. It is for this reason that the majority of ergonomic fNIRS systems that have been developed to date target the prefrontal cortex. In the present study we compared the performance of a novel, portable fNIRS headband compared with a stationary full headcap fNIRS system to measure sensorimotor activity during simple upper- and lower-extremity tasks, in healthy individuals >50 years of age. Both fNIRS systems demonstrated the expected pattern of hemodynamic activity in both upper- and lower-extremity tasks, and a comparison of the contrast-to-noise ratio between the two systems suggests the prototype fNIRS headband is non-inferior to a full head cap fNIRS system regarding the ability to detect a physiological response at the sensorimotor cortex during these tasks. These results suggest the use of a wireless and fibreless fNIRS design is feasible for measurement at the sensorimotor cortex.
本研究旨在描述一种原型功能性近红外光谱(fNIRS)头带的性能,该头带旨在实现对感觉运动皮层的快速、简便测量。fNIRS 非常适合人体工程学设计(即能够实现无线化、相对抗运动伪影等特点),这导致了许多新型人体工程学 fNIRS 系统的出现;然而,fNIRS 测量的光学性质对头皮下的大脑区域的测量提出了固有挑战。正是出于这个原因,迄今为止开发的大多数人体工程学 fNIRS 系统都针对前额叶皮层。在本研究中,我们比较了一种新型便携式 fNIRS 头带与固定式全头帽 fNIRS 系统在 50 岁以上健康个体进行简单上下肢任务时测量感觉运动活动的性能。两种 fNIRS 系统在上下肢任务中均表现出预期的血液动力学活动模式,并且对两种系统之间的对比噪声比进行比较表明,原型 fNIRS 头带在检测这些任务中感觉运动皮层的生理反应的能力方面与全头帽 fNIRS 系统相当。这些结果表明,无线和无光纤 fNIRS 设计可用于感觉运动皮层的测量。