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使用新型心震图频谱系统识别心脏周期中的位置特异性特征点。

Identification of Location Specific Feature Points in a Cardiac Cycle Using a Novel Seismocardiogram Spectrum System.

出版信息

IEEE J Biomed Health Inform. 2018 Mar;22(2):442-449. doi: 10.1109/JBHI.2016.2620496. Epub 2016 Oct 25.

Abstract

Seismocardiogram (SCG) or mechanocardiography is a noninvasive cardiac diagnostic method; however, previous studies used only a single sensor to detect cardiac mechanical activities that will not be able to identify location-specific feature points in a cardiac cycle corresponding to the four valvular auscultation locations. In this study, a multichannel SCG spectrum measurement system was proposed and examined for cardiac activity monitoring to overcome problems like, position dependency, time delay, and signal attenuation, occurring in traditional single-channel SCG systems. ECG and multichannel SCG signals were simultaneously recorded in 25 healthy subjects. Cardiac echocardiography was conducted at the same time. SCG traces were analyzed and compared with echocardiographic images for feature point identification. Fifteen feature points were identified in the corresponding SCG traces. Among them, six feature points, including left ventricular lateral wall contraction peak velocity, septal wall contraction peak velocity, transaortic peak flow, transpulmonary peak flow, transmitral ventricular relaxation flow, and transmitral atrial contraction flow were identified. These new feature points were not observed in previous studies because the single-channel SCG could not detect the location-specific signals from other locations due to time delay and signal attenuation. As the results, the multichannel SCG spectrum measurement system can record the corresponding cardiac mechanical activities with location-specific SCG signals and six new feature points were identified with the system. This new modality may help clinical diagnoses of valvular heart diseases and heart failure in the future.

摘要

心震图(SCG)或心机械描记术是非侵入性心脏诊断方法;然而,以前的研究仅使用单个传感器来检测心脏机械活动,无法识别与四个瓣膜听诊位置相对应的心脏周期中的特定位置特征点。在这项研究中,提出了一种多通道 SCG 频谱测量系统,用于心脏活动监测,以克服传统单通道 SCG 系统中存在的位置依赖性、时滞和信号衰减等问题。在 25 名健康受试者中同时记录心电图和多通道 SCG 信号。同时进行心脏超声检查。对 SCG 迹线进行分析,并与超声心动图图像进行比较,以识别特征点。在相应的 SCG 迹线上识别出 15 个特征点。其中,包括左心室侧壁收缩峰值速度、室间隔壁收缩峰值速度、主动脉峰值流量、肺峰值流量、经二尖瓣心室舒张流量和经二尖瓣心房收缩流量在内的 6 个特征点。这些新的特征点以前的研究中没有观察到,因为单通道 SCG 由于时滞和信号衰减,无法检测到来自其他位置的特定位置信号。结果,多通道 SCG 频谱测量系统可以记录具有特定位置 SCG 信号的相应心脏机械活动,并通过该系统识别出 6 个新的特征点。这种新的模式可能有助于未来瓣膜性心脏病和心力衰竭的临床诊断。

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