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心脏中的机械电反馈(转导):概念与影响

Mechanoelectric feedback (transduction) in heart: concepts and implications.

作者信息

Lab M J

机构信息

Department of Physiology, Charing Cross and Westminster Medical School, London, UK.

出版信息

Cardiovasc Res. 1996 Jul;32(1):3-14.

PMID:8776398
Abstract

It seems that one could regard mechanoelectric feedback in normal heart as an intrinsic regulatory process that modulates normal electromechanical interactions (Fig. 6, left loop). Any physiological mechano-electro-mechano perturbation is self-adjusting and homeostatic. This preserves the status quo, or the heart adapts to form a new electro-mechanoelectric situation. The position in cardiac pathology is different (Fig. 6, right loop), particularly if the disease process produces inhomogeneities. A premature ventricular contraction can be mechanically induced by several of the accepted electrophysiological arrhythmic mechanisms. Thereafter, instantaneous feedback develops within and between regional heterogeneous mechanical conditions. These non-linear recovery processes compound interacting non-linear time courses of recovery of restitution and excitability. Changes in initial loading or mechanical conditions could initiate arrhythmia. Both mechanical and electrical inhomogeneities (also diagrammed in Fig. 5) compound the situation in the intact ventricle. This would enable a milieu of altered excitability, arrhythmogenic current flow and re-entry, to sustain the arrhythmia.

摘要

似乎可以将正常心脏中的机电反馈视为一种内在调节过程,该过程调节正常的机电相互作用(图6,左环)。任何生理上的机械-电-机械扰动都是自我调节且稳态的。这维持了现状,或者心脏适应形成一种新的电-机械-电情况。心脏病理学中的情况则不同(图6,右环),特别是如果疾病过程产生了不均匀性。室性早搏可由几种公认的电生理心律失常机制机械诱发。此后,在局部异质性机械条件内部和之间会产生瞬时反馈。这些非线性恢复过程使恢复和兴奋性恢复的相互作用的非线性时间过程复杂化。初始负荷或机械条件的变化可能引发心律失常。机械和电的不均匀性(图5中也有图示)使完整心室的情况更加复杂。这将使兴奋性改变、致心律失常电流流动和折返的环境得以维持心律失常。

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