Klum Michael, Leib Fabian, Oberschelp Casper, Martens David, Pielmus Alexandru-Gabriel, Tigges Timo, Penzel Thomas, Orglmeister Reinhold
Annu Int Conf IEEE Eng Med Biol Soc. 2019 Jul;2019:5781-5785. doi: 10.1109/EMBC.2019.8857210.
Detecting critical events in postoperative care and improving comfort, costs and availability in sleep assessment are two of many areas in which wearable biosignal acquisition can be a viable tool. Modern sensors as well as patch and textile integration facilitate unobtrusive biosignal acquisition, yet placing sensors at different locations across the body is still prevailing. Actigraphy and the electrocardiogram (ECG) are commonly integrated modalities. The stethoscope however, despite its wide range of applications, has been neglected from these developments. The introduction of digital stethoscopes, recently led to an objectification and increased interest in the field. We present the prototype of a wearable, Bluetooth 5.0 LE enabled multimodal sensor patch combining five modalities: MEMS stethoscope, ambient noise sensing, ECG, impedance pneumography (IP) and 9-axial actigraphy. The system alleviates the need for sensors at different body positions and enables long-term auscultation. Using high sampling rates and online synchronization, multimodal sensor fusion becomes feasible. The patch measures 70 mm x 60 mm and is attached using three 24 mm Ag/AgCl electrodes. High quality cardiac and pulmonary auscultation as well as ECG and IP acquisition are demonstrated. We derived respiration surrogates with linear correlations to a reference exceeding 0.91 and conclude that the system can be utilized in fields requiring unobtrusive yet high quality signal acquisition. Future research will include the integration of additional sensors and further size reduction.
在术后护理中检测关键事件以及改善睡眠评估中的舒适度、成本和可用性,是可穿戴生物信号采集可成为可行工具的众多领域中的两个。现代传感器以及贴片和纺织品集成便于进行不引人注意的生物信号采集,但将传感器放置在身体的不同位置仍然很普遍。活动记录仪和心电图(ECG)是常见的集成模式。然而,听诊器尽管应用广泛,但在这些发展中却被忽视了。数字听诊器的引入最近导致了该领域的客观化并增加了人们的兴趣。我们展示了一种可穿戴的、支持蓝牙5.0 LE的多模态传感器贴片的原型,它结合了五种模式:MEMS听诊器、环境噪声传感、ECG、阻抗式肺通气描记法(IP)和九轴活动记录仪。该系统减少了对不同身体部位传感器的需求,并实现了长期听诊。使用高采样率和在线同步,多模态传感器融合变得可行。该贴片尺寸为70毫米×60毫米,使用三个24毫米的Ag/AgCl电极进行附着。展示了高质量的心脏和肺部听诊以及ECG和IP采集。我们得出了与参考值线性相关性超过0.91的呼吸替代指标,并得出结论,该系统可用于需要不引人注意但高质量信号采集的领域。未来的研究将包括集成更多传感器并进一步减小尺寸。