Khokhlova Liudmila, Komaris Dimitrios-Sokratis, Tedesco Salvatore, O'Flynn Brendan
Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:7300-7303. doi: 10.1109/EMBC46164.2021.9629954.
Among the many diverse methods of recording biological signals, sound and acoustic emission monitoring are becoming popular for data acquisition; however, these sensors tend to be very susceptible to motion artefacts and noise. In the case of joint monitoring, this issue is even more significant, considering that joint sounds are recorded during limb movements to establish joint health and performance. This paper investigates different sensor attachment methods for acoustic emission monitoring of the knee, which could lead to reduced motion and skin movement artefacts and improve the quality of sensory data sets. As a proof-of-concept study, several methods were tested over a range of exercises to evaluate noise resistance and signal quality. The signals least affected by motion artefacts were recorded when using high-density ethylene-vinyl acetate (EVA) foam holders, attached to the skin with double-sided biocompatible adhesive tape. Securing and isolating the connecting cable with foam is also recommended to avoid noise due to the cable movement.Clinical Relevance- The results of this study will be useful in joint AE monitoring, as well as in other methods of body sound recording that involve the mounting of relatively heavy sensors, such as phonocardiography and respiratory monitoring.
在众多记录生物信号的不同方法中,声音和声学发射监测在数据采集中正变得越来越流行;然而,这些传感器往往非常容易受到运动伪影和噪声的影响。在关节监测的情况下,考虑到在肢体运动过程中记录关节声音以评估关节健康状况和性能,这个问题就更加突出。本文研究了用于膝关节声学发射监测的不同传感器附着方法,这可能会减少运动和皮肤移动伪影,并提高传感数据集的质量。作为一项概念验证研究,在一系列运动中测试了几种方法,以评估抗噪声能力和信号质量。当使用高密度乙烯 - 醋酸乙烯酯(EVA)泡沫固定器并用双面生物相容性胶带贴附在皮肤上时,记录到受运动伪影影响最小的信号。还建议用泡沫固定和隔离连接电缆,以避免由于电缆移动产生的噪声。临床相关性 - 本研究结果将有助于关节声学发射监测,以及其他涉及安装相对较重传感器的身体声音记录方法,如心音图和呼吸监测。