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衰竭心脏中的长度依赖性张力与心脏再同步治疗的疗效。

Length-dependent tension in the failing heart and the efficacy of cardiac resynchronization therapy.

机构信息

Biomedical Engineering Department, The Rayne Institute, 4th Floor, Lambeth Wing, St Thomas' Hospital, London SE1 7EH, UK.

出版信息

Cardiovasc Res. 2011 Feb 1;89(2):336-43. doi: 10.1093/cvr/cvq318. Epub 2010 Oct 14.

Abstract

AIMS

Cardiac resynchronization therapy (CRT) has emerged as one of the few effective and safe treatments for heart failure. However, identifying patients that will benefit from CRT remains controversial. The dependence of CRT efficacy on organ and cellular scale mechanisms was investigated in a patient-specific computer model to identify novel patient selection criteria.

METHODS AND RESULTS

A biophysically based patient-specific coupled electromechanics heart model has been developed which links the cellular and sub-cellular mechanisms which regulate cardiac function to the whole organ function observed clinically before and after CRT. A sensitivity analysis of the model identified lack of length dependence of tension regulation within the sarcomere as a significant contributor to the efficacy of CRT. Further simulation analysis demonstrated that in the whole heart, length-dependent tension development is key not only for the beat-to-beat regulation of stroke volume (Frank-Starling mechanism), but also the homogenization of tension development and strain.

CONCLUSIONS

In individuals with effective Frank-Starling mechanism, the length dependence of tension facilitates the homogenization of stress and strain. This can result in synchronous contraction despite asynchronous electrical activation. In these individuals, synchronizing electrical activation through CRT may have minimal benefit.

摘要

目的

心脏再同步治疗(CRT)已成为心力衰竭少数有效且安全的治疗方法之一。然而,确定哪些患者将从 CRT 中受益仍存在争议。本研究通过一种特定于患者的计算机模型来研究 CRT 疗效对器官和细胞尺度机制的依赖性,以确定新的患者选择标准。

方法和结果

我们开发了一种基于生物物理的特定于患者的耦合机电心脏模型,该模型将调节心脏功能的细胞和亚细胞机制与 CRT 前后临床观察到的整个器官功能联系起来。对该模型进行的敏感性分析表明,肌节内张力调节缺乏长度依赖性是 CRT 疗效的重要贡献因素。进一步的模拟分析表明,在整个心脏中,张力的长度依赖性发展不仅是每搏输出量调节(Frank-Starling 机制)的关键,也是张力和应变均匀化的关键。

结论

在具有有效 Frank-Starling 机制的个体中,张力的长度依赖性有利于应力和应变的均匀化。这可能导致尽管存在电活动不同步,但仍能同步收缩。在这些个体中,通过 CRT 同步电活动可能获益最小。

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