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Ultrathin Injectable Sensors of Temperature Thermal Conductivity and Heat Capacity for Cardiac Ablation Monitoring

机译:用于心脏消融监测的温度导热系数和热容量的超薄型可注射传感器

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摘要

Knowledge of the distributions of temperature in cardiac tissue during and after ablation is important in advancing a basic understanding of this process, and for improving its efficacy in treating arrhythmias. Technologies that enable real-time temperature detection and thermal characterization in the transmural direction can help to predict the depths and sizes of lesion that form. Herein, materials and designs for an injectable device platform that supports precision sensors of temperature and thermal transport properties distributed along the length of an ultrathin and flexible needle-type polymer substrate are introduced. The resulting system can insert into the myocardial tissue, in a minimally invasive manner, to monitor both radiofrequency ablation and cryoablation, in a manner that has no measurable effects on the natural mechanical motions of the heart. The measurement results exhibit excellent agreement with thermal simulations, thereby providing improved insights into lesion transmurality.
机译:了解消融过程中和消融后心脏组织中的温度分布,对于增进对该过程的基本了解以及提高其在治疗心律不齐方面的功效都很重要。能够在跨壁方向进行实时温度检测和热表征的技术可以帮助预测形成的病变的深度和大小。本文介绍了可注射设备平台的材料和设计,该平台支持沿超薄柔性针型聚合物基材的长度分布的温度和热传输特性的精密传感器。所得到的系统可以以微创的方式插入到心肌组织中,从而以对心脏的自然机械运动没有可测量影响的方式监视射频消融和冷冻消融。测量结果与热模拟显示出极好的一致性,从而提供了对病灶透壁性的改进见解。

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