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Accounting for cardiac t-tubule increase with age and myocyte volume to improve measurements of its membrane area and ionic current densities

机译:核算心脏T-小管随着年龄和肌细胞体积而增加,以改善其膜面积和离子电流密度的测量

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摘要

In-silico models of cardiac myocytes allow simulating experiments in numbers on series of myocytes as well as on large populations of myocytes assembled in 3D structures. The simulated myocyte populations should have realistic values and statistical dispersions of biophysical parameters such as myocyte dimensions and volume and areas of the peripheral membrane and transverse-axial tubular system (TATS). Dependencies among these variables also have to be taken into account. In this work, we propose a quantitative representation of the changes in the fraction of membrane area in the TATS that integrates published dependencies with body weight (age) and size of rat ventricular cardiac myocytes while respecting the above constraints. Imposing a constant total membrane area-to-volume ratio appears to account for the increase of this fraction with myocyte size (i.e.: volume) within a given age group. The agreement of our results with published data was discussed and reasons for discrepancies were analysed. On the basis of our framework, strategies are proposed for minimizing the influence of non-random dispersion related to myocyte volume on measurements of the area of TATS and surface membrane compartments and of ionic current densities. The next step will be to quantitatively compare these strategies by evaluating the impact of myocyte morphological parameters and their dependencies, sample size, biases and errors, on the output of experiments. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在心肌细胞的电子模型中,可以对一系列心肌细胞以及以3D结构组装的大量心肌细胞进行模拟实验。模拟的心肌细胞群应具有生物物理参数的实际值和统计离散度,如心肌细胞尺寸、体积、外周膜面积和横轴小管系统(TATS)。还必须考虑这些变量之间的依赖关系。在这项工作中,我们提出了一种TATS中膜面积分数变化的定量表示方法,该方法将已发表的依赖性与大鼠心室肌细胞的体重(年龄)和大小结合起来,同时遵守上述约束条件。在给定年龄组内,施加恒定的总膜面积与体积比似乎可以解释这一比例随着心肌细胞大小(即体积)的增加而增加的原因。讨论了我们的结果与公布数据的一致性,并分析了差异的原因。基于我们的框架,提出了一些策略,以最小化与心肌细胞体积有关的非随机色散对TAT和表面膜室面积以及离子电流密度测量的影响。下一步将通过评估心肌细胞形态参数及其相关性、样本量、偏差和误差对实验结果的影响,对这些策略进行定量比较。(C) 2020爱思唯尔有限公司版权所有。

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