BITalino:一种新的生理计算硬件框架

H. Silva, José Guerreiro, A. Lourenço, A. Fred, Raúl Martins
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引用次数: 58

摘要

物理计算已经引发了一场真正的全球革命,改变了数字与现实世界的交互方式。从带转灯的自行车夹克到推特控制的圣诞树,DiY (DiY)硬件运动推动了无尽的创新,刺激了一个创造性工程的时代。这种持续的(r)进化是由Arduino, Lilypad或树莓派等流行电子平台主导的,然而,这些设计并没有考虑到生物信号采集的具体要求。到目前为止,生理计算社区严重缺乏与DiY电子领域类似的东西,特别是在合适的硬件框架方面。在本文中,我们建立在我们小组内部开发的先前工作的基础上,专注于一体化,低成本和模块化生物信号采集硬件平台,这使得构建生物医学设备变得更快,更容易。我们描述了主要的设计考虑、实验评估和电路表征结果,以及来自多个目标用户群体(即健康科学和电气、生物医学和计算机工程)的志愿者进行的可用性研究的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BITalino: A Novel Hardware Framework for Physiological Computing
Physical computing has spun a true global revolution in the way in which the digital interfaces with the real world. From bicycle jackets with turn signal lights to twitter-controlled christmas trees, the Do-it-Yourself (DiY) hardware movement has been driving endless innovations and stimulating an age of creative engineering. This ongoing (r)evolution has been led by popular electronics platforms such as the Arduino, the Lilypad, or the Raspberry Pi, however, these are not designed taking into account the specific requirements of biosignal acquisition. To date, the physiological computing community has been severely lacking a parallel to that found in the DiY electronics realm, especially in what concerns suitable hardware frameworks. In this paper, we build on previous work developed within our group, focusing on an all-in-one, low-cost, and modular biosignal acquisition hardware platform, that makes it quicker and easier to build biomedical devices. We describe the main design considerations, experimental evaluation and circuit characterization results, together with the results from a usability study performed with volunteers from multiple target user groups, namely health sciences and electrical, biomedical, and computer engineering.
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