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首页> 外文期刊>American Journal of Physiology >Electrical refractory period restitution and spiral wave reentry in simulated cardiac tissue.
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Electrical refractory period restitution and spiral wave reentry in simulated cardiac tissue.

机译:模拟心脏组织的电不应期恢复和螺旋波折返。

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摘要

Theoretical and experimental studies have shown that restitution of the cardiac action potential (AP) duration (APD) plays a major role in predisposing ventricular tachycardia to degenerate to ventricular fibrillation, whereas its role in atrial fibrillation is unclear. We used the Courtemanche human atrial cell model and the Luo-Rudy guinea pig ventricular model to compare the roles of electrical restitution in destabilizing spiral wave reentry in simulated two-dimensional homogeneous atrial and ventricular tissue. Because atrial AP morphology is complex, we also validated the usefulness of effective refractory period (ERP) restitution. ERP restitution correlated best with APD restitution at transmembrane potentials greater than or equal to -62 mV, and its steepness was a reliable predictor of spiral wave phenotype (stable, meandering, hypermeandering, and breakup) in both atrial and ventricular tissue. Spiral breakup or single hypermeandering spirals occurred when the slope of ERP restitution exceeded 1 at short diastolic intervals. Thus ERP restitution, which is easier to measure clinically than APD restitution, is a reliable determinant of spiral wave stability in simulated atrial and ventricular tissue.
机译:理论和实验研究表明,心脏动作电位(AP)持续时间(APD)的恢复在使室性心动过速退化为室颤方面起主要作用,而其在房颤中的作用尚不清楚。我们使用Courtemanche人心房细胞模型和Luo-Rudy豚鼠心室模型比较电恢复在模拟二维均质心房和心室组织中使螺旋波折返不稳定的作用。由于心房AP形态复杂,因此我们也验证了有效不应期(ERP)恢复的有用性。在跨膜电位大于或等于-62 mV时,ERP恢复与APD恢复最相关,并且其陡度是心房和心室组织螺旋波表型(稳定,曲折,过度弯曲和破裂)的可靠预测指标。当舒张期短时ERP恢复的斜率超过1时,发生螺旋破裂或单次高变螺旋。因此,ERP的恢复在临床上比APD的恢复更容易测量,它是模拟心房和心室组织中螺旋波稳定性的可靠决定因素。

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