Lacerenza Michele, Spinelli Lorenzo, Buttafava Mauro, Dalla Mora Alberto, Zappa Franco, Pifferi Antonio, Tosi Alberto, Cozzi Bruno, Torricelli Alessandro, Contini Davide
Politecnico di Milano, Dipartimento di Fisica, Milano, Italy.
Istituto di Fotonica e Nanotecnologie, Consiglio Nazionale delle Ricerche, Milano, Italy.
Neurophotonics. 2021 Jan;8(1):015006. doi: 10.1117/1.NPh.8.1.015006. Epub 2021 Feb 22.
This study is a preliminary step toward the identification of a noninvasive and reliable tool for monitoring the presence and progress of gaiting dysfunctions. We present the results of a pilot study for monitoring the motor cortex hemodynamic response function (HRF) in freely walking subjects, with time-domain functional near-infrared spectroscopy (TD fNIRS). A compact and wearable single-channel TD fNIRS oximeter was employed. The lower limb motor cortex area of three healthy subjects was monitored while performing two different freely moving gaiting tasks: forward and backward walking. The time course of oxygenated and deoxygenated hemoglobin was measured during the different walking tasks. Brain motor cortex hemodynamic activations have been analyzed throughout an adaptive HRF fitting procedure, showing a greater involvement of motor area in the backward walking task. By comparison with the HRF obtained in a finger-tapping task performed in a still condition, we excluded any effect of motion artifacts in the gaiting tasks. For the first time to our knowledge, the hemodynamic motor cortex response was measured by TD fNIRS during natural, freely walking exercises. The cortical response during forward and backward walking shows differences, possibly related to the diverse involvement of the motor cortex in the two types of gaiting.
本研究是朝着识别一种用于监测步态功能障碍的存在和进展的非侵入性可靠工具迈出的初步步骤。我们展示了一项初步研究的结果,该研究使用时域功能近红外光谱(TD fNIRS)监测自由行走受试者的运动皮层血流动力学反应函数(HRF)。采用了一种紧凑且可穿戴的单通道TD fNIRS血氧仪。在三名健康受试者执行两种不同的自由移动步态任务(向前和向后行走)时,对其下肢运动皮层区域进行了监测。在不同的行走任务期间测量了氧合血红蛋白和脱氧血红蛋白的时间进程。通过整个自适应HRF拟合程序对脑运动皮层血流动力学激活进行了分析,结果表明在向后行走任务中运动区域的参与度更高。通过与在静止状态下执行的手指敲击任务中获得的HRF进行比较,我们排除了步态任务中运动伪影的任何影响。据我们所知,这是首次在自然、自由行走运动期间通过TD fNIRS测量血流动力学运动皮层反应。向前和向后行走期间的皮层反应存在差异,这可能与运动皮层在两种步态类型中的不同参与情况有关。