Impact of delayed ventricular wall area ratio on pathophysiology of mechanical dyssynchrony: Implication from single-ventricle physiology and 0D modeling

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Abstract

Electrical disparity can induce inefficient cardiac performance, representing an uncoordinated wall motion at an earlier activated ventricular wall: an early shortening followed by a systolic rebound stretch. Although regional contractility and distensibility modulate this pathological motion, the effect of a morphological factor has not been emphasized. Our strain analysis in 62 patients with single ventricle revealed that those with an activation delay in 60-70% of ventricular wall area suffered from cardiac dysfunction and mechanical discoordination along with prolonged QRS duration. A computational simulation with a two-compartment ventricular model also suggested that the ventricle with an activation delay in 70% of the total volume was most vulnerable to a large activation delay, accompanied by an uncoordinated motion at an earlier activated wall. Taken together, the ratio of the delayed ventricular wall has a significant impact on the pathophysiology due to an activation delay, potentially highlighting an indicator of cardiac dysfunction.

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Hayama, Y., Shimizu, S., Kawada, T., Negishi, J., Sakaguchi, H., Miyazaki, A., … Sugimachi, M. (2020). Impact of delayed ventricular wall area ratio on pathophysiology of mechanical dyssynchrony: Implication from single-ventricle physiology and 0D modeling. Journal of Physiological Sciences, 70(1). https://doi.org/10.1186/s12576-020-00765-y

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