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Considering Angle Selection When Using Ultrasound Electrode Displacement Elastography to Evaluate Radiofrequency Ablation of Tissues

机译:使用超声电极位移弹性成像技术评估组织射频消融时应考虑角度选择

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摘要

Percutaneous radiofrequency ablation (RFA) is a minimally invasive treatment to thermally destroy tumors. Ultrasound-based electrode-displacement elastography is an emerging technique for evaluating the region of RFA-induced lesions. The angle between the imaging probe and the RFA electrode can influence electrode-displacement elastography when visualizing the ablation zone. We explored the angle effect on electrode-displacement elastography to measure the ablation zone. Phantoms embedded with meatballs were fabricated and then ablated using an RFA system to simulate RFA-induced lesions. For each phantom, a commercial ultrasound scanner with a 7.5 MHz linear probe was used to acquire raw image data at different angles, ranging from 30° to 90° at increments of 10°, to construct electrode-displacement images and facilitate comparisons with tissue section images. The results revealed that the ablation regions detected using electrode-displacement elastography were highly correlated with those from tissue section images when the angle was between 30° and 60°. However, the boundaries of lesions were difficult to distinguish, when the angle was larger than 60°. The experimental findings suggest that angle selection should be considered to achieve reliable electrode-displacement elastography to describe ablation zones.
机译:经皮射频消融(RFA)是一种微创治疗,可以热破坏肿瘤。基于超声的电极位移弹性成像是一种新兴的技术,用于评估RFA诱发的病变区域。当观察消融区时,成像探针和RFA电极之间的角度会影响电极位移弹性成像。我们探索了对电极位移弹性成像的角度影响,以测量消融区。制造嵌入肉丸的幻影,然后使用RFA系统消融以模拟RFA诱发的病变。对于每个幻影,使用带有7.5 MHz线性探头的商用超声扫描仪以30°至90°的不同角度(以10°的增量)获取原始图像数据,以构建电极位移图像并便于与组织切片进行比较图片。结果显示,当角度在30°和60°之间时,使用电极位移弹性成像技术检测到的消融区域与组织切片图像中的消融区域高度相关。但是,当角度大于60°时,很难区分病变的边界。实验结果表明,应该考虑选择角度以实现可靠的电极位移弹性成像来描述消融区域。

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