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首页> 外文期刊>Journal of Electrocardiology: An International Publication for the Study of the Electrical Activities of the Heart >Effects of barriers on propagation of action potentials in two-dimensional cardiac tissue. A computer simulation study.
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Effects of barriers on propagation of action potentials in two-dimensional cardiac tissue. A computer simulation study.

机译:屏障对二维心脏组织中动作电位传播的影响。计算机仿真研究。

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摘要

A two-dimensional anisotropic model of cardiac ventricular muscle was used to study the effects of discontinuities (barriers), such as dead cells or high-resistance areas, on longitudinal plane-wave propagation. Problems in propagation appear when long barriers become thicker and their spacing closer. Short barriers with large widths and small spacing also cause propagation disturbances and significant delays in their vicinity. If the plane wave front propagates through the barriers, the velocity returns to near normal within one-length constant away from the end of the barrier region. For a funnel-like structure, an opening of 13 cells should exist for longitudinal plane wave propagation. For smaller openings, the ratio of openings required for propagation to occur when traveling from a narrow to a wider area of tissue is proportional to the anisotropy ratio, which can cause unidirectional block. Tortuosity, created by spatial distribution of dead cell barriers, can facilitate propagation by changing the effective impedance the wave front sees, and can create multiple local delays, which may result in discrepancies when measuring propagation velocity.
机译:二维心室肌各向异性模型用于研究不连续(障碍)(如死细胞或高阻区)对纵向平面波传播的影响。当长的壁垒变厚并且它们的间距更近时,传播问题就会出现。具有大宽度和小间距的短屏障也会引起传播干扰并在其附近产生明显的延迟。如果平面波前传播通过势垒,则速度在远离势垒区域末端的一个长度常数内恢复到接近法线。对于漏斗状结构,应存在13个孔的开口,以进行纵向平面波传播。对于较小的开口,当从狭窄的组织传播到较宽的组织区域时,传播所需的开口比率与各向异性比率成正比,这会引起单向阻塞。由死细胞屏障的空间分布造成的曲折,可以通过改变波前看到的有效阻抗来促进传播,并且可以产生多个局部延迟,这可能会导致测量传播速度时出现差异。

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