Siejko Krzysztof Z, Thakur Pramodsingh H, Maile Keith, Patangay Abhilash, Olivari Maria-Teresa
Boston Scientific Corp, St. Paul, MN 55112, USA.
Pacing Clin Electrophysiol. 2013 Mar;36(3):334-46. doi: 10.1111/pace.12059. Epub 2012 Dec 17.
The feasibility of detecting heart sounds (HS) from an accelerometer sensor enclosed within an implantable cardioverter defibrillator (ICD) pulse generator (PG) was explored in a noninvasive pilot study on heart failure (HF) patients with audible third HS (S3).
Accelerometer circuitry enhanced for HS was incorporated into non-functional ICDs. A study was conducted on 30 HF patients and 10 normal subjects without history of cardiac disease. The devices were taped to the skin surface over both left and right pectoral regions to simulate subcutaneous implants. A lightweight reference accelerometer was taped over the cardiac apex. Waveforms were recorded simultaneously with a surface electrocardiogram for 2 minutes. Algorithms were developed to perform off-line automatic detection of HS and HS time intervals (HSTIs).
S1, S2, and S3 vibrations were detected in all accelerometer locations for all 40 subjects, including 16 subjects without an audible S3. A substantial proportion of S3 energy was infrasonic (<20 Hz). Extending the signal bandwidth accordingly increased HS amplitudes and the ability of S3 to separate HF patients from the normal subgroup. HSTIs also separated the subgroups and were less susceptible to patient-dependent acoustic propagation properties than amplitude measures.
HS, including S3 amplitude and HSTIs, may be measured using PG-embedded circuitry at implant sites without special purpose leads. Further study is warranted to determine if relative changes in heart sounds measurements can be effective in applications such as remote ambulatory monitoring of HF progression and the detection of the onset of HF decompensation.
在一项针对有可闻及第三心音(S3)的心力衰竭(HF)患者的非侵入性初步研究中,探讨从植入式心脏复律除颤器(ICD)脉冲发生器(PG)内的加速度计传感器检测心音(HS)的可行性。
将增强用于检测心音的加速度计电路整合到无功能的ICD中。对30例HF患者和10例无心脏病史的正常受试者进行了研究。将这些装置贴在左右胸壁区域的皮肤表面,以模拟皮下植入。一个轻型参考加速度计贴在心尖上方。与体表心电图同时记录波形2分钟。开发了算法以进行心音及其时间间隔(HSTIs)的离线自动检测。
在所有40名受试者的所有加速度计位置均检测到S1、S2和S3振动,包括16名无可闻及S3的受试者。相当一部分S3能量是次声的(<20 Hz)。相应地扩展信号带宽会增加心音幅度以及S3将HF患者与正常亚组区分开的能力。HSTIs也能区分亚组,并且比幅度测量更不易受患者相关的声学传播特性影响。
可以使用植入部位的PG嵌入式电路测量心音,包括S3幅度和HSTIs,而无需专用导联。有必要进一步研究以确定心音测量的相对变化在诸如远程动态监测HF进展和检测HF失代偿发作等应用中是否有效。