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Intra-myocardial cusp waves and their manifestation in optical mapping signals

机译:心肌内尖瓣波及其在光学定位信号中的表现

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The rotating fiber orientation within the cardiac wall substantially affects the electrical propagation and can cause intra-myocardial cusp waves. Numerical simulations have shown that the cusps form in layers where propagation is perpendicular to the fiber orientation and lead to complex wave front morphologies. They can travel across layers and break through at the epi- or endocardial surfaces where they cause apparent accelerations of propagation. The validation of these results remains a major experimental challenge. In the present study, we investigate both computationally and experimentally how intramural cusp waves can be detected using optical imaging. Our simulations show that cusps alter the optical upstroke morphology and can be detected well before they reach the surface (up to 1 mm deep). Experiments in Langendorff-perfused guinea pig hearts are consistent with our numerical findings
机译:心脏壁内旋转的纤维取向会严重影响电传播,并可能引起心肌内尖瓣波。数值模拟表明,尖点形成在传播垂直于纤维取向的层中,并导致复杂的波阵面形态。它们可以跨层传播并在心外膜或心内膜表面突破,从而引起明显的传播加速。这些结果的验证仍然是主要的实验挑战。在本研究中,我们在计算和实验上都研究了如何使用光学成像检测壁内尖瓣波。我们的模拟结果表明,尖尖会改变光学上冲程的形态,并且可以在尖尖到达表面(深达1毫米)之前就被很好地检测到。在Langendorff灌注的豚鼠心脏中进行的实验与我们的数值结果一致

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