增强型体外反搏对生理耦合的即时效应研究
A study on the immediate effects of enhanced external counterpulsation on physiological coupling.
作者信息
Liu Hongyun, Liang Hui, Yu Xiaohua, Han Yi, Wang Guojing, Yan Muyang, Wang Weidong, Li Shijun
机构信息
Research Center for Biomedical Engineering, Medical Innovation Research Division, Chinese PLA General Hospital, Beijing, China.
Key Laboratory of Biomedical Engineering and Translational Medicine, Ministry of Industry and Information Technology, Beijing, China.
出版信息
Front Neurosci. 2023 Jun 7;17:1197598. doi: 10.3389/fnins.2023.1197598. eCollection 2023.
INTRODUCTION
Enhanced external counterpulsation (EECP) is a non-invasive assisted circulation technique for its clinical application in the rehabilitation and management of ischemic cardiovascular and cerebrovascular diseases, which has complex physiological and hemodynamic effects. However, the effects of EECP on the coupling of physiological systems are still unclear. We aimed to investigate the immediate effects of EECP on the coupling between integrated physiological systems such as cardiorespiratory and cardiovascular systems.
METHODS
Based on a random sham-controlled design, simultaneous electrocardiography, photoplethysmography, bio-electrical impedance, and continuous hemodynamic data were recorded before, during and after two consecutive 30 min EECP in 41 healthy adults. Physiological coupling strength quantified by phase synchronization indexes (PSI), hemodynamic measurements and heart rate variability indices of 22 subjects (female/male: 10/12; age: 22.6 ± 2.1 years) receiving active EECP were calculated and compared with those of 19 sham control subjects (female/male: 7/12; age: 23.6 ± 2.5 years).
RESULTS
Immediately after the two consecutive EECP interventions, the physiological coupling between respiratory and cardiovascular systems PSI (0.34 ± 0.14 vs. 0.49 ± 0.17, = 0.002), the physiological coupling between cardiac and cardiovascular systems PSI (0.41 ± 0.14 vs. 0.52 ± 0.16, = 0.006) and the total physiological coupling PSI (1.21 ± 0.35 vs. 1.57 ± 0.49, = 0.005) in the EECP group were significantly lower than those before the EECP intervention, while the physiological coupling indexes in the control group did not change significantly ( > 0.05).
CONCLUSION
Our study provides evidence that the PSI is altered by immediate EECP intervention. We speculate that the reduced PSI induced by EECP may be a marker of disturbed physiological coupling. This study provides a new method for exploring the mechanism of EECP action and may help to further optimize the EECP technique.
引言
增强型体外反搏(EECP)是一种非侵入性辅助循环技术,用于缺血性心血管和脑血管疾病的康复与管理,具有复杂的生理和血流动力学效应。然而,EECP对生理系统耦合的影响仍不清楚。我们旨在研究EECP对心肺和心血管等综合生理系统之间耦合的即时影响。
方法
基于随机假对照设计,在41名健康成年人中,连续两次30分钟EECP治疗前、治疗期间和治疗后,同步记录心电图、光电容积脉搏波描记法、生物电阻抗和连续血流动力学数据。计算并比较了22名接受主动EECP治疗的受试者(女性/男性:10/12;年龄:22.6±2.1岁)的生理耦合强度(通过相位同步指数(PSI)量化)、血流动力学测量值和心率变异性指标,以及19名假对照受试者(女性/男性:7/12;年龄:23.6±2.5岁)的相应指标。
结果
连续两次EECP干预后,EECP组呼吸与心血管系统之间的生理耦合PSI(0.34±0.14对0.49±0.17,P = 0.002)、心脏与心血管系统之间的生理耦合PSI(0.41±0.14对0.52±0.16,P = 0.006)以及总生理耦合PSI(1.21±0.35对1.57±0.49,P = 0.005)均显著低于EECP干预前,而对照组的生理耦合指数无显著变化(P>0.05)。
结论
我们的研究提供了证据表明EECP即时干预会改变PSI。我们推测EECP诱导的PSI降低可能是生理耦合紊乱的一个标志。本研究为探索EECP作用机制提供了一种新方法,可能有助于进一步优化EECP技术。