首页> 外文会议>Engineering in Medicine and Biology Society, 1995., IEEE 17th Annual Conference >The effect of skeletal muscle layer modeling on cardiac damage estimates during transthoracic defibrillation
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The effect of skeletal muscle layer modeling on cardiac damage estimates during transthoracic defibrillation

机译:经胸除颤期间骨骼肌层建模对心脏损伤估计的影响

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The objective of this study is to examine how modeling the skeletal muscle layer affects computed estimates of cardiac damage during transthoracic defibrillation. The study is implemented with a physiologically realistic 3-D volume conductor model of the human thorax. The model computes current density distributions within the heart from a knowledge of defibrillation shock strength, defibrillation electrode location, and the relative conductivities of the interior thorax. Cardiac damage estimates are based on achieving 95% critical mass during a defibrillation shock. Solutions have been constructed for three sets of skeletal muscle conductivities that are widely used in the literature. The results for anterior-posterior, precordial, and right-left defibrillation electrode configurations indicate that computed estimates of cardiac damage vary by as much as 85%, 23%, and 18%, respectively. These results strongly suggest that computed estimates for cardiac damage during a defibrillation shock are dependent on the conductivity values chosen for the skeletal muscle layer, and therefore estimates of cardiac damage at present are limited to realistic ranges rather than precise determination.
机译:这项研究的目的是研究在开胸除颤过程中骨骼肌层建模如何影响心脏损伤的计算估计值。这项研究是通过人类胸部生理上逼真的3-D体积导体模型实现的。该模型根据除颤电击强度,除颤电极位置以及内部胸腔的相对电导率的知识来计算心脏内的电流密度分布。心脏损伤评估是基于在除颤电击过程中达到95%的临界质量。已经为三套骨骼肌电导率构建了解决方案,这些解决方案在文献中被广泛使用。前后,心前区和左右除颤电极配置的结果表明,心脏损伤的计算估计值分别相差多达85%,23%和18%。这些结果强烈表明,对除颤电击过程中心脏损害的计算估计值取决于为骨骼肌层选择的电导率值,因此,目前对心脏损害的估计值仅限于实际范围而不是精确确定。

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