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一种临床使用的用于脑电图测量的触觉刺激装置。

A Tactile Stimulation Device for EEG Measurements in Clinical Use.

作者信息

Pokorny Christoph, Breitwieser Christian, Muller-Putz Gernot R

出版信息

IEEE Trans Biomed Circuits Syst. 2014 Jun;8(3):305-12. doi: 10.1109/TBCAS.2013.2270176. Epub 2013 Jul 9.

DOI:10.1109/TBCAS.2013.2270176
PMID:23864261
Abstract

A tactile stimulation device for EEG measurements in clinical environments is proposed. The main purpose of the tactile stimulation device is to provide tactile stimulation to different parts of the body. To stimulate all four major types of mechanoreceptors, different stimulation patterns with frequencies in the range of 5-250 Hz have to be generated. The device provides two independent channels, delivers enough power to drive different types of electromagnetic transducers, is small and portable, and no expensive components are required to construct this device. The generated stimulation patterns are very stable, and deterministic control of the device is possible. To meet electrical safety requirements, the device was designed to be fully galvanically isolated. Leakage currents of the entire EEG measurement system including the tactile stimulation device were measured by the European Testing and Certifying Body for Medical Products Graz (Notified Body 0636). All measured currents were far below the maximum allowable currents defined in the safety standard EN 60601-1:2006 for medical electrical equipment. The successful operation of the tactile stimulation device was tested during an EEG experiment. The left and right wrist of one healthy subject were randomly stimulated with seven different frequencies. Steady-state somatosensory evoked potential (SSSEPs) could successfully be evoked and significant tuning curves at electrode positions contralateral to the stimulated wrist could be found. The device is ready to be used in clinical environment in a variety of applications to investigate the somatosensory system, in brain-computer interfaces (BCIs), or to provide tactile feedback.

摘要

本文提出了一种用于临床环境中脑电图测量的触觉刺激装置。该触觉刺激装置的主要目的是对身体的不同部位提供触觉刺激。为了刺激所有四种主要类型的机械感受器,必须生成频率范围在5 - 250Hz的不同刺激模式。该装置提供两个独立通道,能够提供足够的功率来驱动不同类型的电磁换能器,体积小且便于携带,构建该装置无需昂贵的组件。所生成的刺激模式非常稳定,并且对该装置进行确定性控制是可行的。为满足电气安全要求,该装置设计为完全电隔离。包括触觉刺激装置在内的整个脑电图测量系统的漏电流由格拉茨医疗产品欧洲测试和认证机构(公告机构0636)进行测量。所有测量电流均远低于医疗电气设备安全标准EN 60601 - 1:2006中规定的最大允许电流。在一次脑电图实验中对触觉刺激装置的成功运行进行了测试。对一名健康受试者的左右手腕随机施加七种不同频率的刺激。能够成功诱发稳态体感诱发电位(SSSEP),并且在受刺激手腕对侧的电极位置可以发现明显的调谐曲线。该装置已准备好在临床环境中用于各种应用,以研究体感系统、脑机接口(BCI)或提供触觉反馈。

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