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Design and Evaluation of a Catheter Contact-Force Controller for Cardiac Ablation Therapy

机译:用于心脏消融的导管接触力控制器的设计和评估

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Goal: Maintaining a constant contact force (CF) of an ablation catheter during cardiac catheter ablation therapy is clinically challenging due to inherent myocardial motion, often resulting in poor ablation of arrhythmogenic substrates. To enable a prescribed contact force to be applied during ablation, a catheter contact force controller (CCFC) was developed. Methods: The system includes a hand-held device attached to a commercial catheter and steerable sheath. A compact linear motor assembly attaches to an ablation catheter and autonomously controls its relative position within the shaft of the steerable sheath. A closed-loop control system is implemented within embedded electronics to enable real-time catheter-tissue contact force control. To evaluate the performance of the CCFC, a linear motion phantom was used to impose a series of physiological CF profiles; lesion CF was controlled at prescribed levels ranging from 15 to 40 g. Results: For a prescribed CF of 25 g, the CCFC was able to regulate the CF with a root mean squared error of 3.7 ± 0.7 g. The ability of the CCFC to retract the catheter upon sudden changes in tissue motion, which may have caused tissue damage, was also demonstrated. Finally, the device was able to regulate the CF for a predetermined amount of time according to a force-time integral model. Conclusion: The developed CCFC is capable of regulating catheter-tissue CF in a laboratory setting that mimics clinical ablation therapy. Significance: Catheter-tissue CF control promises to improve the precision and success of ablation lesion delivery.
机译:目标:由于固有的心肌运动,在心脏导管消融治疗期间维持消融导管的恒定接触力(CF)在临床上具有挑战性,通常会导致心律失常性基质消融不良。为了在消融期间能够施加规定的接触力,开发了导管接触力控制器(CCFC)。方法:该系统包括一个手持设备,该手持设备连接到商用导管和可操纵的护套上。紧凑的线性马达组件附接到消融导管上,并自主控制其在可操纵护套的轴内的相对位置。嵌入式电子设备内实施了闭环控制系统,以实现实时导管与组织的接触力控制。为了评估CCFC的性能,使用了线性运动体模来施加一系列生理CF轮廓。将病变CF控制在15至40 g的规定水平。结果:对于规定的25 g CF,CCFC能够以3.7±0.7 g的均方根误差来调节CF。还证明了CCFC在组织运动突然变化时可能缩回导管的能力,这可能引起组织损伤。最终,该设备能够根据力时积分模型在预定的时间内调节CF。结论:开发的CCFC在模拟临床消融治疗的实验室环境中能够调节导管组织的CF。意义:导管组织的CF控制有望提高消融病变转移的准确性和成功率。

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