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通过无线和微型 EEG 放大器对皮质本体感受处理进行量化。

Quantification of cortical proprioceptive processing through a wireless and miniaturized EEG amplifier.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2022 Jul;2022:4797-4800. doi: 10.1109/EMBC48229.2022.9871637.

Abstract

Corticokinematic coherence (CKC) is computed between limb kinematics and cortical activity (e.g. MEG, EEG), and it can be used to detect, quantify and localize the cortical processing of proprioceptive afference arising from the body. EEG-based studies on CKC have been limited to lab environments due to bulky, non-portable instrumentations. We recently proposed a wireless and miniaturized EEG acquisition system aimed at enabling EEG studies outside the laboratory. The purpose of this work is to compare the EEG-based CKC values obtained with this device with a conventional wired-EEG acquisition system to validate its use in the quantification of cortical proprioceptive processing. Eleven healthy right-handed participants were recruited (six males, four females, age range: 24-40 yr). A pneumatic-movement actuator was used to evoke right index-finger flexion-extension movement at 3 Hz for 4 min. The task was repeated both with the wireless-EEG and wired-EEG devices using the same 30-channel EEG cap preparation. CKC was computed between the EEG and finger acceleration. CKC peaked at the movement frequency and its harmonics, being statistically significant (p < 0.05) in 8-10 out of 11 participants. No statistically significant differences (p < 0.05) were found in CKC strength between wireless-EEG (range 0.03-0.22) and wired-EEG (0.02-0.33) systems, that showed a good agreement between the recording systems (3 Hz: r = 0.57, p = 0.071, 6 Hz: r = 0.82, p = 0.003). As expected, CKC peaked in sensors above the left primary sensorimotor cortex contralateral to the moved right index finger. As the wired-EEG device, the tested wireless-EEG system has proven feasible to quantify CKC, and thus can be used as a tool to study proprioception in the human neocortex. Thanks to its portability, the wireless-EEG used in this study has the potential to enable the examination of cortical proprioception in more naturalistic conditions outside the laboratory environment. Clinical Relevance-Our study will contribute to provide innovative technological foundations for future unobtrusive EEG recordings in naturalistic conditions to examine human sensorimotor system.

摘要

皮质运动相干性(CKC)是在肢体运动学和皮质活动(例如 MEG、EEG)之间计算的,它可用于检测、量化和定位源自身体的本体感受传入的皮质处理。由于仪器笨重且不便于携带,基于 EEG 的 CKC 研究仅限于实验室环境。我们最近提出了一种无线和微型化的 EEG 采集系统,旨在实现实验室外的 EEG 研究。这项工作的目的是将使用该设备获得的基于 EEG 的 CKC 值与传统的有线 EEG 采集系统进行比较,以验证其在量化皮质本体感觉处理中的用途。招募了 11 名健康的右利手参与者(6 名男性,4 名女性,年龄范围:24-40 岁)。使用气动运动执行器以 3 Hz 的频率引发右食指屈伸运动,持续 4 分钟。使用相同的 30 通道 EEG 帽准备,使用无线 EEG 和有线 EEG 设备重复该任务。在 EEG 和手指加速度之间计算 CKC。CKC 在运动频率及其谐波处达到峰值,在 11 名参与者中的 8-10 名中具有统计学意义(p<0.05)。在无线 EEG(范围 0.03-0.22)和有线 EEG(0.02-0.33)系统之间,CKC 强度没有发现统计学上的显著差异(p<0.05),这表明记录系统之间具有良好的一致性(3 Hz:r=0.57,p=0.071,6 Hz:r=0.82,p=0.003)。如预期的那样,CKC 在传感器中达到峰值,这些传感器位于与移动的右食指相对的左侧主要感觉运动皮层上方。与有线 EEG 设备一样,经过测试的无线 EEG 系统已被证明能够定量 CKC,因此可用作研究人类新皮层本体感觉的工具。由于其便携性,本研究中使用的无线 EEG 有可能在实验室环境之外的更自然的条件下检查皮质本体感觉。临床意义-我们的研究将为未来在自然条件下进行非侵入性 EEG 记录以检查人类感觉运动系统提供创新的技术基础。

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