Orini M, Nanda A, Yates M, Di Salvo C, Roberts N, Lambiase P D, Taggart P
Institute of Cardiovascular Science, University College London, London, UK; Barts Heart Centre, St Bartholomew's Hospital, London, UK.
Department of Medical Sciences, University of Oxford, UK.
Prog Biophys Mol Biol. 2017 Nov;130(Pt B):365-375. doi: 10.1016/j.pbiomolbio.2017.06.001. Epub 2017 Jun 3.
Mechano-electric feedback (MEF) is an established mechanism whereby myocardial deformation causes changes in cardiac electrophysiological parameters. Extensive animal, laboratory and theoretical investigation has demonstrated that abnormal patterns of cardiac strain can induce alteration of electrical excitation and recovery through MEF, which can potentially contribute to the establishment of dangerous arrhythmias. However, the clinical relevance of MEF in patients with heart disease remains to be established. This paper reviews up-to date experimental evidence describing the response to different types of mechanical stimuli in the intact human heart with the support of new data collected during cardiac surgery. It discusses modulatory effects of MEF that may contribute to increase the vulnerability to arrhythmia and describes MEF interaction with clinical conditions where mechanically induced changes in cardiac electrophysiology are likely to be more relevant. Finally, directions for future studies, including the need for in-vivo human data providing simultaneous assessment of the distribution of structural, functional and electrophysiological parameters at the regional level, are identified.
机械电反馈(MEF)是一种既定机制,通过该机制心肌变形会导致心脏电生理参数发生变化。大量的动物、实验室及理论研究表明,心脏应变的异常模式可通过机械电反馈诱发电兴奋和恢复的改变,这可能会促进危险心律失常的发生。然而,机械电反馈在心脏病患者中的临床相关性仍有待确定。本文回顾了最新的实验证据,这些证据描述了在心脏手术期间收集的新数据支持下,完整人体心脏对不同类型机械刺激的反应。本文讨论了可能导致心律失常易感性增加的机械电反馈调节作用,并描述了机械电反馈与临床情况的相互作用,在这些临床情况中,机械诱导的心脏电生理变化可能更具相关性。最后,确定了未来研究的方向,包括需要体内人体数据来同时评估区域水平上结构、功能和电生理参数的分布情况。