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Temporal Dilation of Animal Cardiac Recordings Registered to Human Torso Geometries

机译:随时间变化的动物心脏记录注册到人类躯干的几何形状。

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摘要

Recordings of cardiac surface potentials from animal hearts can be mapped into human torso and used as source potentials for torso simulation. However, geometric registration of the heart can introduce changes in the effective conduction velocity due to change in relative positions of the recording sites. We developed a time dilation technique to ensure that adjusted cardiac potential recordings had physiological timing similar to human recordings after registration and corrected for conduction velocity.Temporal dilation was performed both linearly and nonlinearly using two scaling techniques that reflect either global or local deformations. Linear temporal dilation of canine epicardial potential recordings using global scaling could be used to generate electrograms physiologically similar to humans in terms of conduction velocity, activation recovery interval, total activation time, and activation maps. Epicardial potential mapping of such dilated canine recordings thus allows the investigation of human-like arrhythmias and other disease states that can not be readily induced or measured in humans.
机译:来自动物心脏的心脏表面电位的记录可以映射到人体躯干中,并用作躯干模拟的源电位。然而,由于记录部位的相对位置的变化,心脏的几何配准会导致有效传导速度的变化。我们开发了一种时间扩张技术,以确保调整后的心脏电势记录在注册后具有与人类记录相似的生理时机并校正传导速度。临时扩张使用两种反映整体或局部变形的缩放技术线性和非线性进行。使用全局标度的犬心外膜电位记录的线性时间扩张可用于生成在电导率,激活恢复间隔,总激活时间和激活图方面与人体生理相似的电描记图。因此,这种扩张的犬记录的心外膜电势图谱允许研究人类不易诱发或测量的类人心律失常和其他疾病状态。

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