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基于三维人体测量学的脑电图耳机的人体工程学设计。

Ergonomic design of an EEG headset using 3D anthropometry.

作者信息

Lacko Daniël, Vleugels Jochen, Fransen Erik, Huysmans Toon, De Bruyne Guido, Van Hulle Marc M, Sijbers Jan, Verwulgen Stijn

机构信息

iMinds-Vision Lab, University of Antwerp, Antwerp, Belgium; Department of Design Science, Product Development, University of Antwerp, Antwerp, Belgium; Laboratorium voor Neuro- en Psychofysiologie, KU Leuven, Leuven, Belgium.

Department of Design Science, Product Development, University of Antwerp, Antwerp, Belgium.

出版信息

Appl Ergon. 2017 Jan;58:128-136. doi: 10.1016/j.apergo.2016.06.002. Epub 2016 Jun 23.

Abstract

Although EEG experiments over the past decades have shown numerous applications for brain-computer interfacing (BCI), there is a need for user-friendly BCI devices that can be used in real-world situations. 3D anthropometry and statistical shape modeling have been shown to improve the fit of devices such as helmets and respirators, and thus they might also be suitable to design BCI headgear that better fits the size and shape variation of the human head. In this paper, a new design method for BCI devices is proposed and evaluated. A one-size-fits-all BCI headset frame is designed on the basis of three digital mannequins derived from a shape model of the human head. To verify the design, the geometric fit, stability and repeatability of the prototype were compared to an EEG cap and a commercial BCI headset in a preliminary experiment. Most design specifications were met, and all the results were found to be similar to those of the commercial headset. Therefore, the suggested design method is a feasible alternative to traditional anthropometric design for BCI headsets and similar headgear.

摘要

尽管在过去几十年中,脑电图(EEG)实验已在脑机接口(BCI)方面展现出众多应用,但仍需要能够在现实场景中使用的用户友好型BCI设备。三维人体测量学和统计形状建模已被证明可改善头盔和呼吸器等设备的贴合度,因此它们可能也适用于设计更适合人类头部尺寸和形状变化的BCI头饰。本文提出并评估了一种BCI设备的新设计方法。基于从人类头部形状模型导出的三个数字人体模型,设计了一种通用尺寸的BCI头戴式耳机框架。为验证该设计,在初步实验中将原型的几何贴合度、稳定性和可重复性与脑电图帽和商用BCI头戴式耳机进行了比较。大多数设计规格均得到满足,且所有结果均与商用头戴式耳机的结果相似。因此,所建议的设计方法是BCI头戴式耳机及类似头饰传统人体测量设计的可行替代方案。

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