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Plasma-Tissue Interactions in Argon Plasma Coagulation: Effects of Power and Tissue Resistance

机译:氩等离子体凝血中的血浆 - 组织相互作用:动力和组织抗性的影响

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The coagulation properties of the argon plasma coagulation (APC) technique present tremendous potential for a wide range of endoscopic applications. Although several studies have explored the endoscopic application of this technique, there has been no previous research about the relevant argon plasma properties during coagulation. We have investigated the role of power in the interactions between plasma and biological tissue, and have reported on the dielectric properties of the APC treated samples. The data revealed that at a resistance of 1 kQ, the applied power was within 10% to 15% of the power setting, and the average resistance of the animal samples was between 0.8 and 3.7 kQ. The data also suggested that the amount of power applied could be adjusted according to the expected tissue resistance range. Additionally, it was determined that the burned surface caused by the APC treatment was on average two to three times less conductive than the untreated surface. The data also revealed that 60%-80% of the power produced by the electrosurgical generator was delivered into the biological tissue, and the plasma channel consumed the remaining 20%-40%. This study establishes a guide for the investigation of optimal argon thermal plasma properties for biological tissue application.
机译:氩等离子体凝血(APC)技术的凝固性能存在广泛的内窥镜应用的巨大潜力。虽然有几项研究探索了这种技术的内窥镜应用,但以前没有关于凝血过程中相关的氩等离子体特性的研究。我们已经研究了功率在血浆和生物组织之间的相互作用中的作用,并且已经报道了APC处理样品的电介质性质。显示数据显示,在电阻为1 kq的情况下,施加的功率在功率设定的10%至15%以内,动物样品的平均电阻在0.8和3.7kq之间。数据还建议可以根据预期的组织阻力范围调整所施加的功率量。另外,确定由APC处理引起的燃烧表面平均导电的平均较小的导电表面比未处理的表面较小。数据还显示,通过电外科发电机产生的60%-80%的电力被递送到生物组织中,等离子体通道消耗剩余的20%-40%。本研究建立了用于生物组织应用的最佳氩热等离子体性能的指导。

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