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Technical Note: A Low-Cost Research Platform for Brain-Computer-Interface Applications in Mixed Reality

机译:技术说明:混合现实中的脑电脑界面应用的低成本研究平台

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Many brain-computer-interface (BCI) approaches, such as the steady-state-visually-evoked-potential (SSVEP) and BCI speller paradigms, rely on evoking neural signals using presentation of audiovisual stimuli. These exogenous BCIs typically involve the user staring at a physical stimulus presentation apparatus resulting in prolonged system setup and degraded portability. We present a research platform for BCI implementations in mixed reality (XR) environments, enabling less-invasive holographic stimulus presentation and greatly enhanced portability at low-cost. The platform consists of a 3D-printable electroencephalography (EEG) attachment for the Microsoft HoloLens, firmware for the OpenBCI Cyton EEG amplifier evaluation kit, and Unity software supporting direct Bluetooth low-energy communication between the EEG device and the HoloLens. The platform allows researchers and hobbyists to prototype BCIs with an easy to don/doff EEG attachment for the HoloLens that is capable of recording high-quality EEG using dry electrodes in an untethered XR environment without the need for external compute resources.
机译:许多大脑 - 计算机接口(BCI)方法,例如稳态视觉上诱发的电位(SSVEP)和BCI拼写器范式,依赖于使用视听刺激的呈现唤起神经信号。这些外源性BCI通常涉及用户在物理刺激呈现设备处凝视,导致长时间的系统设置和降级的便携性。我们为混合现实(XR)环境中的BCI实现提供了一个研究平台,从而实现了较少侵入的全息刺激介绍,并以低成本大大提高了便携性。该平台由3D可打印的脑电图(EEG)附件组成,用于Microsoft Hololens,OpenBCI Cyton ASEG放大器评估套件的固件,以及支持EEG器件和Hololens之间的直接蓝牙低能量通信的Unity软件。该平台允许研究人员和业余爱好者使用易于达到/ DOFF EEG附件的原型BCIS,其能够在不受限制的XR环境中使用干电极记录高质量EEG而无需外部计算资源。

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