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Shear-Wave Based Monitoring of Radiofrequency Ablations at Clinically Relevant Depths

机译:基于剪切波的临床相关深度射频消融监测

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Real-time monitoring of radiofrequency ablation is important to ensure adequate treatment coverage of tumors as well as protection of healthy tissues. The high stiffness contrast between ablated and non-treated tissues has led to the use of ultrasound elastography for coagulation zone visualization but its use has been limited to shallow depths. A shear wave decorrelation mapping approach was developed for ablation boundary detection at clinically relevant depths. The shear wave elastography technique was evaluated using ex vivo bovine liver samples as well as whole livers from fresh cadavers and anesthetized live pigs. Overall the shear wave technique appears feasible for defining and monitoring the progression of thermal lesion boundary.
机译:实时监测射频消融对确保足够的肿瘤治疗范围以及保护健康组织非常重要。消融和未处理组织之间的高刚度对比已导致将超声弹性成像用于凝结区可视化,但其使用仅限于较浅的深度。剪切波去相关映射方法被开发用于在临床相关深度处的消融边界检测。使用离体牛肝样品以及新鲜尸体和麻醉的活猪的全肝对剪切波弹性成像技术进行了评估。总体而言,剪切波技术对于定义和监测热损伤边界的进展似乎是可行的。

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