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Ultrasound monitoring of temperature change during radiofrequency ablation: preliminary in-vivo results.

机译:超声监测射频消融过程中的温度变化:初步体内结果。

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摘要

Radiofrequency (RF) ablation is an interstitial focal ablative therapy that can be used in a percutaneous fashion and permits in situ destruction of hepatic tumors. However, local tumor recurrence rates after RF ablative therapy are as high as 34% to 55%, which may be due in part to the inability to monitor accurately temperature profiles in the tissue being ablated, and to visualize the subsequent zone of necrosis (thermal lesion) formed. The goal of the work described in this paper was to investigate methods for the real-time and in vivo monitoring of the spatial distribution of heating and temperature elevation to achieve better control of the degree of tissue damage during RF ablation therapy. Temperature estimates are obtained using a cross-correlation algorithm applied to RF ultrasound (US) echo signal data acquired at discrete intervals during heating. These temperature maps were used to display the initial temperature rise and to continuously update a thermal map of the treated region. Temperature monitoring is currently performed using thermosensors on the prongs (tines) of the RF ablation probe. However, monitoring the spatial distribution of heating is necessary to control the degree of tissue damage produced.
机译:射频消融是一种间质性局灶性消融治疗,可以以经皮方式使用,可以原位破坏肝肿瘤。但是,射频消融治疗后局部肿瘤的复发率高达34%至55%,这可能部分是由于无法准确监控被消融组织中的温度曲线,以及无法观察到随后的坏死区域(热病变)形成。本文所述工作的目的是研究实时和体内监测加热和温度升高的空间分布的方法,以更好地控制射频消融治疗期间的组织损伤程度。使用互相关算法获得温度估算值,该互相关算法适用于在加热过程中以离散间隔获取的RF超声(US)回波信号数据。这些温度图用于显示初始温度升高并连续更新处理区域的热图。当前,使用射频消融探头尖头(尖齿)上的热传感器执行温度监控。但是,必须监测加热的空间分布,以控制产生的组织损伤的程度。

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