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A cryogenic catheter for treating heart arrhythmia

机译:一种低温导管,用于治疗心脏心律失常

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Progress in the development of a cryogenic catheter to treat heart arrhythmia is discussed. This system uses a mixed-gas Joule-Thomson (J-T) refrigerator to cool the tip of a catheter that can be inserted into the body through the large veins leading into the heart. The cryogenic catheter is intended to treat heart arrhythmia characterized by an abnormally rapid heart rate, although the system has a wide variety of other medical applications. Approximately 2 million people in the U.S. suffer from rapid-rate heart arrhythmia. catheter therapy has proven to be a more effective and less expensive method of treatment than alternatives such as drugs or surgery. A cryogenic catheter has significant advantages over existing catheters used in this form of therapy. The catheter has coaxial tubes for the high and low pressure streams with a miniature heat exchanger and J-T orifice at the catheter tip. The high pressure is maintained at 2.5 MPa. The largest diameter is 3 mm, the length is 90 cm, and all but the last 10-20 mm is flexible. The gas mixture has been optimized for the required operating conditions using nonflammable and low ozone depletion gases. Low cost techniques have been incorporated into the fabrication of the cold tip so that each catheter can be disposable. Several prototype catheters have been built. No-load temperatures down to 85 K were achieved with the cold tip exposed to ambient air. Using room temperature gelatin to simulate tissue heat loads, catheter tip temperatures of 160 to 175 K have been achieved, and ice balls about 26 mm in dismeter weighing 11 g were created. we estimate that ice balls about 10 mm in diameter weighing 1.5 to 2.0 g are required to treat ventricular arrhythmia. Although the heat load in our experiments was less than the in vivo load, we think the current refrigeration power is sufficient to meet the clinical requirement.
机译:讨论了对治疗心律失常的低温导管的发展进展。该系统使用混合气体焦耳 - 汤姆森(J-T)冰箱来冷却导管的尖端,该尖端可以通过导致心脏的大静脉插入体内。低温导管旨在治疗心脏心律失常,其特征在于心率异常快速,尽管该系统具有各种其他医疗应用。美国约有200万人患有快速率心中的心律失常。导管疗法已被证明是比药物或手术等替代品更有效和更便宜的治疗方法。低温导管对以这种疗法使用的现有导管具有显着的优点。导管具有用于高压和低压流的同轴管,其在导管尖端处具有微型热交换器和J-T孔。高压保持在2.5MPa。最大直径为3毫米,长度为90厘米,除了最后10-20毫米的柔性。通过不易燃和低臭氧耗尽气体优化气体混合物针对所需的操作条件进行了优化。已经结合到冷尖的制造中的低成本技术,使得每个导管可以是一次性的。已经建造了几种原型导管。通过暴露于环境空气的冷尖来实现无负载温度降至85 k。使用室温明胶来模拟组织热载荷,已经实现了160至175 k的导管尖端温度,并且产生了大约26mm的沉碎沉积11g。我们估计,需要大约10毫米的直径为1.5至2.0g,治疗心律失常的冰球。虽然我们的实验中的热负荷小于体内载荷,但我们认为目前的制冷功率足以满足临床要求。

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