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Probing Field-Induced Tissue Polarization Using Transillumination Fluorescent Imaging

机译:使用透射照明荧光成像探测场诱导的组织极化

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摘要

Despite major successes of biophysical theories in predicting the effects of electrical shocks within the heart, recent optical mapping studies have revealed two major discrepancies between theory and experiment: 1), the presence of negative bulk polarization recorded during strong shocks; and 2), the unexpectedly small surface polarization under shock electrodes. There is little consensus as to whether these differences result from deficiencies of experimental techniques, artifacts of tissue damage, or deficiencies of existing theories. Here, we take advantage of recently developed near-infrared voltage-sensitive dyes and transillumination optical imaging to perform, for the first time that we know of, noninvasive probing of field effects deep inside the intact ventricular wall. This technique removes some of the limitations encountered in previous experimental studies. We explicitly demonstrate that deep inside intact myocardial tissue preparations, strong electrical shocks do produce considerable negative bulk polarization previously inferred from surface recordings. We also demonstrate that near-threshold diastolic field stimulation produces activation of deep myocardial layers 2–6 mm away from the cathodal surface, contrary to theory. Using bidomain simulations we explore factors that may improve the agreement between theory and experiment. We show that the inclusion of negative asymmetric current can qualitatively explain negative bulk polarization in a discontinuous bidomain model.
机译:尽管生物物理理论在预测心脏内电击的影响方面取得了重大成功,但最近的光学制图研究发现理论和实验之间存在两个主要差异:1)在强电击中记录了负体极化。 2)冲击电极下的表面极化异常小。关于这些差异是否是由于实验技术的缺陷,组织损伤的伪影或现有理论的缺陷引起的,几乎没有共识。在这里,我们利用最近开发的近红外电压敏感染料和透照光学成像技术,首次对完整的心室壁深处的场效应进行无创探测。该技术消除了先前实验研究中遇到的一些限制。我们明确证明,在完整的心肌组织制剂内部深处,强烈的电击确实会产生以前从表面记录推断出的相当大的负体极化。我们还证明,与理论相反,接近阈值的舒张场刺激会在距阴极表面2–6 mm处产生深层心肌层的激活。使用双域模拟,我们探索了可能改善理论与实验之间一致性的因素。我们表明,包含负不对称电流可以定性解释不连续双畴模型中的负体极化。

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