Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
IEEE Trans Biomed Eng. 2013 Jan;60(1):189-92. doi: 10.1109/TBME.2012.2217958. Epub 2012 Sep 7.
A low-power wearable ECG monitoring system has been developed entirely from discrete electronic components and a custom PCB. This device removes all loose wires from the system and minimizes the footprint on the user. The monitor consists of five electrodes, which allow a cardiologist to choose from a variety of possible projections. Clinical tests to compare our wearable monitor with a commercial clinical ECG recorder are conducted on ten healthy adults under different ambulatory conditions, with nine of the datasets used for analysis. Data from both monitors were synchronized and annotated with PhysioNet's waveform viewer WAVE (physionet.org) [1]. All gold standard annotations are compared to the results of the WQRS detection algorithm [2] provided by PhysioNet. QRS sensitivity and QRS positive predictability are extracted from both monitors to validate the wearable monitor.
已开发出一种完全由分立电子元件和定制 PCB 组成的低功耗可穿戴心电图监测系统。该设备从系统中去除了所有松散的电线,并最大限度地减小了用户身上的痕迹。该监测器由五个电极组成,允许心脏病专家从各种可能的投影中进行选择。在不同的活动条件下,对十位健康成年人进行了将我们的可穿戴监测器与商业临床心电图记录仪进行比较的临床测试,其中九个数据集用于分析。两个监测器的数据都进行了同步,并使用 PhysioNet 的波形查看器 WAVE(physionet.org)[1]进行注释。所有黄金标准注释都与 PhysioNet 提供的 WQRS 检测算法[2]的结果进行比较,以验证可穿戴监测器。从两个监测器中提取 QRS 灵敏度和 QRS 阳性预测性,以验证可穿戴监测器。