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Derivation of the Relationship between the Rate of Temperature Rise and Viscoelasticity for Constructing a Coagulation Model for Liver Radio Frequency Ablation

机译:衍生肝脏射频消融凝固模型的温升升高与粘弹性的关系

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Radio frequency ablation (RFA) is usually conducted using ultrasound (US) imaging to monitor the insertion procedure and the coagulation extent of liver tissue which is contiguous to the RFA electrode. However, when RFA surgery is started, the US image becomes unclear because of water vapor. This disadvantage of RFA can lead to excessive and insufficient RFA thereby diminishing the advantages of the procedure. In the present study, we proposed a simulation system which shows the progress status of coagulation for liver RFA. To derive the coagulation characteristics in liver RFA, we used the viscoelasticity of liver tissue as the coagulation indicator to investigate coagulation development for liver RFA. This paper shows the acquisition procedures for analyzing the relationship between the rate of temperature and viscoelasticity. We measured the complex modulus of porcine liver tissue under different rate of temperature in RFA by controlling the output power. We showed that the viscoelasticity of liver tissue depended on temperature previous temperature increase above 60°C. This result indicates that in RFA, controlling the output power is important to completely coagulate the tumor.
机译:射频消融(RFA)通常使用超声(US)成像进行,以监测与RFA电极邻接的肝组织的插入过程和凝固程度。然而,当RFA手术开始时,由于水蒸气,美国图像变得不明确。 RFA的这种缺点可能导致过度且不足的RFA,从而降低程序的优点。在本研究中,我们提出了一种仿真系统,其展示了肝脏RFA凝血的进展状态。为了衍生肝脏RFA中的凝血特性,我们使用肝组织的粘弹性作为凝血指示剂,以研究肝脏RFA的凝血发育。本文显示了用于分析温度与粘弹性速率之间的关系的采集程序。通过控制输出功率,我们在RFA中的不同温度速率下测量了猪肝组织的复杂模量。我们表明,肝组织的粘弹性依赖于先前温度以上高于60°C的温度。该结果表明,在RFA中,控制输出功率对于完全凝固肿瘤是重要的。

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