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传感器中心:现实生活中的多模式感知使基于家庭的研究成为可能。

SensorHub: Multimodal Sensing in Real-Life Enables Home-Based Studies.

机构信息

Hasso Plattner Institute, University of Potsdam, 14482 Potsdam, Germany.

出版信息

Sensors (Basel). 2022 Jan 5;22(1):408. doi: 10.3390/s22010408.

Abstract

Observational studies are an important tool for determining whether the findings from controlled experiments can be transferred into scenarios that are closer to subjects' real-life circumstances. A rigorous approach to observational studies involves collecting data from different sensors to comprehensively capture the situation of the subject. However, this leads to technical difficulties especially if the sensors are from different manufacturers, as multiple data collection tools have to run simultaneously. We present SensorHub, a system that can collect data from various wearable devices from different manufacturers, such as inertial measurement units, portable electrocardiographs, portable electroencephalographs, portable photoplethysmographs, and sensors for electrodermal activity. Additionally, our tool offers the possibility to include ecological momentary assessments (EMAs) in studies. Hence, SensorHub enables multimodal sensor data collection under real-world conditions and allows direct user feedback to be collected through questionnaires, enabling studies at home. In a first study with 11 participants, we successfully used SensorHub to record multiple signals with different devices and collected additional information with the help of EMAs. In addition, we evaluated SensorHub's technical capabilities in several trials with up to 21 participants recording simultaneously using multiple sensors with sampling frequencies as high as 1000 Hz. We could show that although there is a theoretical limitation to the transmissible data rate, in practice this limitation is not an issue and data loss is rare. We conclude that with modern communication protocols and with the increasingly powerful smartphones and wearables, a system like our SensorHub establishes an interoperability framework to adequately combine consumer-grade sensing hardware which enables observational studies in real life.

摘要

观察性研究是确定受控实验的结果是否可以转化为更接近研究对象真实生活环境的情况的重要工具。严格的观察性研究方法涉及从不同传感器收集数据,以全面捕捉研究对象的情况。然而,如果传感器来自不同的制造商,这会导致技术困难,因为必须同时运行多个数据收集工具。我们提出了 SensorHub,这是一个可以从不同制造商的各种可穿戴设备收集数据的系统,例如惯性测量单元、便携式心电图仪、便携式脑电图仪、便携式光电容积脉搏波仪和用于皮肤电活动的传感器。此外,我们的工具还提供了在研究中纳入生态瞬时评估(EMA)的可能性。因此,SensorHub 能够在真实环境下进行多模态传感器数据收集,并通过问卷直接收集用户反馈,从而实现家庭研究。在一项有 11 名参与者的初步研究中,我们成功地使用 SensorHub 记录了不同设备的多个信号,并通过 EMA 收集了其他信息。此外,我们在多项试验中评估了 SensorHub 的技术能力,多达 21 名参与者同时使用高达 1000Hz 的采样频率记录多个传感器的信号。我们可以证明,尽管存在理论上的数据传输速率限制,但在实践中,这一限制不是问题,数据丢失很少见。我们的结论是,现代通信协议以及功能日益强大的智能手机和可穿戴设备使得像我们的 SensorHub 这样的系统建立了一个互操作性框架,可以充分结合消费级感应硬件,从而实现现实生活中的观察性研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6967/8749618/06b573fe2dc8/sensors-22-00408-g001.jpg

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