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研究电极支撑结构对可穿戴生物电信号监测中运动伪影的可能影响。

Investigating the possible effect of electrode support structure on motion artifact in wearable bioelectric signal monitoring.

作者信息

Cömert Alper, Hyttinen Jari

机构信息

Department of Electronics and Communications Engineering, BioMediTech, Tampere University of Technology, Tampere, Finland.

出版信息

Biomed Eng Online. 2015 May 15;14:44. doi: 10.1186/s12938-015-0044-2.

Abstract

BACKGROUND

With advances in technology and increasing demand, wearable biosignal monitoring is developing and new applications are emerging. One of the main challenges facing the widespread use of wearable monitoring systems is the motion artifact. The sources of the motion artifact lie in the skin-electrode interface. Reducing the motion and deformation at this interface should have positive effects on signal quality. In this study, we aim to investigate whether the structure supporting the electrode can be designed to reduce the motion artifact with the hypothesis that this can be achieved by stabilizing the skin deformations around the electrode.

METHODS

We compare four textile electrodes with different support structure designs: a soft padding larger than the electrode area, a soft padding larger than the electrode area with a novel skin deformation restricting design, a soft padding the same size as the electrode area, and a rigid support the same size as the electrode. With five subjects and two electrode locations placed over different kinds of tissue at various mounting forces, we simultaneously measured the motion artifact, a motion affected ECG, and the real-time skin-electrode impedance during the application of controlled motion to the electrodes.

RESULTS

The design of the electrode support structure has an effect on the generated motion artifact; good design with a skin stabilizing structure makes the electrodes physically more motion artifact resilient, directly affecting signal quality. Increasing the applied mounting force shows a positive effect up to 1,000 gr applied force. The properties of tissue under the electrode are an important factor in the generation of the motion artifact and the functioning of the electrodes. The relationship of motion artifact amplitude to the electrode movement magnitude is seen to be linear for smaller movements. For larger movements, the increase of motion generated a disproportionally larger artifact. The motion artifact and the induced impedance change were caused by the electrode motion and contained the same frequency components as the applied electrode motion pattern.

CONCLUSION

We found that stabilizing the skin around the electrode using an electrode structure that manages to successfully distribute the force and movement to an area beyond the borders of the electrical contact area reduces the motion artifact when compared to structures that are the same size as the electrode area.

摘要

背景

随着技术的进步和需求的增加,可穿戴生物信号监测技术不断发展,新的应用也不断涌现。可穿戴监测系统广泛应用面临的主要挑战之一是运动伪影。运动伪影的来源在于皮肤-电极界面。减少该界面处的运动和变形应对信号质量产生积极影响。在本研究中,我们旨在研究是否可以通过设计支撑电极的结构来减少运动伪影,假设可以通过稳定电极周围的皮肤变形来实现这一目标。

方法

我们比较了四种具有不同支撑结构设计的纺织电极:一种比电极面积大的软垫层、一种具有新型皮肤变形限制设计且比电极面积大的软垫层、一种与电极面积相同大小的软垫层以及一种与电极相同大小的刚性支撑。对五名受试者,在不同的组织上以不同的安装力放置两个电极位置,在对电极施加受控运动期间,我们同时测量运动伪影、受运动影响的心电图以及实时皮肤-电极阻抗。

结果

电极支撑结构的设计对产生的运动伪影有影响;具有皮肤稳定结构的良好设计使电极在物理上对运动伪影更具弹性,直接影响信号质量。增加施加的安装力在施加力达到1000克之前显示出积极效果。电极下方组织的特性是运动伪影产生和电极功能的一个重要因素。对于较小的运动,运动伪影幅度与电极移动幅度的关系呈线性。对于较大的运动,运动增加产生的伪影不成比例地更大。运动伪影和感应阻抗变化是由电极运动引起的,并且包含与施加的电极运动模式相同的频率成分。

结论

我们发现,与电极面积相同大小的结构相比,使用一种能够成功地将力和运动分布到电接触区域边界之外的区域的电极结构来稳定电极周围的皮肤,可以减少运动伪影。

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