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首页> 外文期刊>Medical engineering & physics. >Precision test apparatus for evaluating the heating pattern of radiofrequency ablation devices.
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Precision test apparatus for evaluating the heating pattern of radiofrequency ablation devices.

机译:用于评估射频消融设备加热方式的精密测试设备。

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摘要

Radiofrequency has established itself as a useful technique for managing cardiac arrhythmias and treating soft tissue tumors. However, despite its pervasive use, many of the biophysical principals needed to fully understand and optimize the radiofrequency ablation technique have not been explored. We have designed a test rig that is useful for studying the heat transfer mechanisms that affect the outcome of radiofrequency ablation devices. Using both solid and liquid phantom materials, which simulate body tissues and blood, the test rig is designed for systematic testing of the effects of predictable flow patterns on the temperature profiles generated within the solid phantom.The test rig consists of a custom built thermistor array, a linear test chamber, and a radiofrequency generator. We calibrate the flow of a liquid phantom material to demonstrate that predictable laminar flow profiles are generated. To demonstrate the performance of the ablation system, we present preliminary data attained using acommercially available cardiac ablation catheter.The advantages of this test system are its flexibility, its reproducibility, its precision, and its low cost. Thus, it is ideally suited for studying a variety of complex ablation problems involving multiple tissues types and complex blood flow geometries.
机译:射频本身已确立为一种用于管理心律不齐和治疗软组织肿瘤的有用技术。然而,尽管其被广泛使用,但尚未探索出充分理解和优化射频消融技术所需的许多生物物理原理。我们设计了一个试验台,可用于研究影响射频消融设备结果的传热机制。该测试台使用模拟人体组织和血液的固体和液体幻象材料,旨在对可预测的流动模式对固体幻象内产生的温度分布的影响进行系统测试。该测试台由定制的热敏电阻阵列组成,线性测试室和射频发生器。我们校准液体幻影材料的流量,以证明可预测的层流轮廓已生成。为了演示消融系统的性能,我们提供了使用市售的心脏消融导管获得的初步数据。该测试系统的优势在于其灵活性,可重复性,精度和低成本。因此,它非常适合研究涉及多种组织类型和复杂血流几何形状的各种复杂消融问题。

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