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Exploring Refractoriness as an Adjunctive Electrical Biomarker for Staging of Atrial Fibrillation

机译:作为辅助电气生物标志物探索耐火材料用于心房颤动的分期

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摘要

Patients diagnosed with the same subtype of atrial fibrillation according to our current classification system may differ in symptom severity, severity of the arrhythmogenic substrate, and response to antiarrhythmic therapy. Hence, there is a need for an electrical biomarker as an indicator of the arrhythmogenic substrate underlying atrial fibrillation enabling patient‐tailored therapy. The aim of this review is to investigate whether atrial refractoriness, a well‐known electrophysiological parameter that is affected by electrical remodeling, can be used as an electrical biomarker of the arrhythmogenic substrate underlying atrial fibrillation. We discuss methodologies of atrial effective refractory period assessment, identify which changes in refractoriness‐related parameters reflect different degrees of electrical remodeling, and explore whether these parameters can be used to predict clinical outcomes.
机译:根据我们目前的分类系统诊断患有相同的心房颤动亚型的患者可能因症状严重程度,心律发生底物的严重程度和对抗性疗法的反应而不同。因此,需要一种电生物标志物作为脑室纤维状纤维状的心律发生底物的指示剂,使患者量身定制的治疗。该审查的目的是研究是否是充气耐火性,一种受电动重塑影响的众所周知的电生理学参数,可以用作心律失常底物质纤维状的电气生物标志物。我们讨论心房有效耐火期评估的方法,确定难蚀性相关参数的变化反映了不同程度的电气重塑,并探索这些参数是否可用于预测临床结果。

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