Pinti Paola, Aichelburg Clarisse, Gilbert Sam, Hamilton Antonia, Hirsch Joy, Burgess Paul, Tachtsidis Ilias
Department of Medical Physics and Biomedical Engineering, University College London, UK.
Institute of Cognitive Neuroscience, University College London, UK.
Jpn Psychol Res. 2018 Oct;60(4):347-373. doi: 10.1111/jpr.12206. Epub 2018 Jul 19.
The development of novel miniaturized wireless and wearable functional Near-Infrared Spectroscopy (fNIRS) devices have paved the way to new functional brain imaging that can revolutionize the cognitive research fields. Over the past few decades, several studies have been conducted with conventional fNIRS systems that have demonstrated the suitability of this technology for a wide variety of populations and applications, to investigate both the healthy brain and the diseased brain. However, what makes wearable fNIRS even more appealing is its capability to allow measurements in everyday life scenarios that are not possible with other gold-standard neuroimaging modalities, such as functional Magnetic Resonance Imaging. This can have a huge impact on the way we explore the neural bases and mechanisms underpinning human brain functioning. The aim of this review is to provide an overview of studies conducted with wearable fNIRS in naturalistic settings in the field of cognitive neuroscience. In addition, we present the challenges associated with the use of wearable fNIRS in unrestrained contexts, discussing solutions that will allow accurate inference of functional brain activity. Finally, we provide an overview of the future perspectives in cognitive neuroscience that we believe would benefit the most by using wearable fNIRS.
新型小型无线可穿戴式功能近红外光谱(fNIRS)设备的发展为新型功能性脑成像铺平了道路,这种成像可能会彻底改变认知研究领域。在过去几十年里,人们使用传统fNIRS系统开展了多项研究,这些研究证明了该技术适用于广泛的人群和应用,可用于研究健康大脑和患病大脑。然而,可穿戴式fNIRS更具吸引力的地方在于,它能够在日常生活场景中进行测量,而这是其他金标准神经成像方式(如功能磁共振成像)所无法做到的。这可能会对我们探索支撑人类大脑功能的神经基础和机制的方式产生巨大影响。这篇综述的目的是概述在认知神经科学领域中使用可穿戴式fNIRS在自然环境下所开展的研究。此外,我们还介绍了在无约束环境中使用可穿戴式fNIRS所面临的挑战,并讨论能够准确推断大脑功能活动的解决方案。最后,我们概述了认知神经科学的未来前景,我们认为使用可穿戴式fNIRS将使其受益最大。