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Investigation of Catheter Curvature and Genetic Algorithms in Conductance Catheter Optimization

机译:导管曲率和电导导管优化中的导管曲率和遗传算法研究

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Catheter curvature affects accuracy of intraventricular blood volume measurement when using conductance catheter techniques, especially with irregular geometries, such as in the right ventricle. To investigate this effect, we present results from using different curved catheter configurations and different numbers of electrodes in a simple Finite Element model. It was found that there is an apparent increase in accuracy with curvature, due to greater linearity in the field in the region of the measurement electrodes, which are located farther from the source electrodes as curvature increases. Also, optimization using Genetic Algorithms is presented as a method to find the optimal distribution of measurement electrodes. We plan to extend these results to develop improved electrode configurations for using in blood volume measurement in the right ventricle.
机译:当使用电导导管技术时,导管曲率会影响腔内血容量测量的准确性,特别是在右心室中的不规则几何形状,例如在右心室中。为了研究这种效果,我们在简单的有限元模型中使用不同的弯曲导管配置和不同数量的电极。发现,由于测量电极区域中的区域中的磁场中的较大线性,所以具有曲率的精度显然增加,因为测量电极的区域中,从源电极远离源电极。此外,使用遗传算法的优化作为找到测量电极的最佳分布的方法。我们计划扩展这些结果以在右心室中使用血液体积测量的改进电极配置。

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