首页> 外文会议>Engineering in Medicine and Biology Society, 1997. Proceedings of the 19th Annual International Conference of the IEEE >Finite element analysis predicts dose-response relationship for constant power and temperature controlled radiofrequencg ablation
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Finite element analysis predicts dose-response relationship for constant power and temperature controlled radiofrequencg ablation

机译:有限元分析预测恒定功率和温度控制的射频消融的剂量反应关系

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Radiofrequency (RF) energy is commonly used to ablate cardiac tissue responsible for tachyarrhythmias. Lesion growth with time is investigated for temperature controlled and constant power RF ablation. Computer simulations are performed to obtain the lesion dimensions at various instants during RF energy delivery. After 120 seconds of RF energy delivery a 619.04 mm/sup 3/, 12.08 mm wide, 8.1 mm deep lesion is obtained for constant power RF ablation and 267.55 mm/sup 3/, 9.18 mm wide, 6.15 mm deep lesion is obtained for temperature controlled RF ablation. Lesion growth is fastest for the first 20 seconds, subsequently the lesion growth slows reaching a steady state after /spl ap/90 seconds. This suggests that RF applications longer than 90 seconds may not yield additional benefits.
机译:射频(RF)能量通常用于消融负责快速性心律失常的心脏组织。研究了温度控制和恒定功率射频消融的病灶随时间增长。在RF能量输送过程中的各个瞬间执行计算机仿真以获得病变尺寸。经过120秒的RF能量输送后,对于恒定功率RF消融,获得了619.04 mm / sup 3 /,宽12.08 mm,深8.1 mm的病变,对于温度,获得了267.55 mm / sup 3 /,宽9.18 mm,6.15 mm的深病变控制射频消融。在前20秒内,病变的生长最快,随后/ spl ap / 90秒后,病变的生长变慢,达到了稳定状态。这表明超过90秒的RF应用可能不会产生额外的好处。

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