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Roll-Off Displacement in Ex Vivo Experiments of RF Ablation With Refrigerated Saline Solution and Refrigerated Deionized Water

机译:冷冻盐水和冷冻去离子水射频消融的 Ex Vivo 实验中的滚降位移

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Objective: The recurrence rate in the treatment of liver tumors using radio frequency ablation (RFA) is often related to incomplete tissue necrosis and consequently the limitation in the ablation volume. This paper proposes an ablation protocol combined with the infusion of saline solution and deionized water aiming at achieving a time displacement in the roll-off occurrence and consequently increasing the volume of ablation. Methods: An infusion of saline solution and deionized water at 5 and 23 degrees C was performed to evaluate the influence of these liquids on the RFA procedure in ex vivo bovine liver pieces. The obtained results were used to propose a mathematical model of the roll-off phenomenon by means of the system identification techniques. Results: The RFA combined with the infusion of saline solution 0.9% at 5 degrees C presented optimal results, with a time delay of the roll-off occurrence in 27.8% compared to pure RFA (p = 0.002) and an increase in the necrotic volume of 51.2% (p = 0.0002). Two Box-Jenkins models were obtained to describe the roll-off phenomenon: 1) pure RFA; and 2) RFA combined with the saline solution 0.9% at 5 degrees C. Conclusion: The RFA therapy combined with the saline solution 0.9% at 5 degrees C increases the time range to the roll-off occurrence, leading to higher necrosis volumes in ex vivo bovine liver samples. The development of a mathematical model to describe the roll-off behavior demonstrated that the transient response is improved by the infusion of the saline solution 0.9% at 5 degrees C.
机译:目的:射频消融术(RFA)治疗肝肿瘤的复发率通常与组织坏死不完全有关,因此消融量受限。本文提出了一种结合盐溶液和去离子水注入的消融方案,旨在实现滚降发生的时间位移并因此增加消融量。方法:分别在5和23摄氏度下注入盐溶液和去离子水,以评估这些液体对离体牛肝碎片中RFA程序的影响。通过系统识别技术,将获得的结果用于提出滚降现象的数学模型。结果:RFA结合在5摄氏度下注入0.9%的盐水溶液显示出最佳效果,与纯RFA相比,滚降的时间延迟为27.8%(p = 0.002),坏死体积增加为51.2%(p = 0.0002)。获得了两个Box-Jenkins模型来描述滚降现象:1)纯RFA; 2)RFA与5%C的盐溶液0.9%联合使用。结论:RFA与5°C的盐溶液0.9%组合使用增加了滚降发生的时间范围,从而导致坏死体积增加。体内牛肝样品。描述滚降行为的数学模型的开发表明,通过在5摄氏度下注入0.9%的盐水溶液可以改善瞬态响应。

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