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首页> 外文期刊>Current Directions in Biomedical Engineering >Effects of fibrosis on the extracellular potential based on 3D reconstructions from histological sections of heart tissue
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Effects of fibrosis on the extracellular potential based on 3D reconstructions from histological sections of heart tissue

机译:基于心脏组织学切片的3D重建,纤维化对细胞外电位的影响

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摘要

Atrial fibrillation is the most common arrhythmia. However, the mechanisms of AF are not completely understood. It is known that fractionated signals are measured in AF but the etiology of fractionated signals is still not clear. The central question is to evaluate the effects of segmented fibrotic areas in histological tissue sections on the extracellular potential in a simulation study. We calculated the transmembrane voltages and extracellular potentials from the excitation wave front around a 3D fibrotic area from mouse hearts that were reconstructed from histological tissue sections. Extracellular potentials resulted in fragmented signals and differed strongly by stimulations from different directions. The transmural angle of the excitation waves had a significantly influence on the signal morphologies. We suggest for future clinical systems to implement the possibility for substrate mapping by stimulations from different directions in sinus rhythm.
机译:心房颤动是最常见的心律不齐。但是,AF的机制尚未完全了解。已知在AF中测量分级信号,但是分级信号的病因仍不清楚。核心问题是在模拟研究中评估组织学切片中纤维化区域的分段对细胞外电位的影响。我们从组织学组织切片重建的小鼠心脏3D纤维化区域周围的激发波前沿计算了跨膜电压和细胞外电位。细胞外电位导致信号破碎,并且来自不同方向的刺激差异很大。激励波的透壁角度对信号形态有很大影响。我们建议未来的临床系统通过窦性心律不同方向的刺激来实现底物定位的可能性。

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