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首页> 外文期刊>Medical Physics >64-element intraluminal ultrasound cylindrical phased array for transesophageal thermal ablation under fast MR temperature mapping: an ex vivo study.
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64-element intraluminal ultrasound cylindrical phased array for transesophageal thermal ablation under fast MR temperature mapping: an ex vivo study.

机译:快速MR温度定位下经食管热消融的64元素腔内超声圆柱形相控阵:离体研究。

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摘要

This work was undertaken to investigate the feasibility of using a cylindrical phased array for transoesophaeal thermal ablation under magnetic resonance (MR) imaging guidance. Sixty-four transducers (0.45 mm wide by 15 mm tall), operating at 4.6 MHz, were spread around the periphery of a 10.6-mm-diam cylinder. The head of the applicator was covered with a 65-microm thick latex balloon attached using watertight seals. This envelope was inflated with degassed water to provide acoustic coupling between the transducer and the tissues. The underlying operating principle of this applicator is to rotate a plane ultrasound beam electronically. For this purpose, eight adjacent transducers were excited with appropriate delay times so as to generate a plane wave. The exposure direction was changed by exciting a different set of eight elements. Ex vivo experiments conducted on 47 samples of pig liver under MR temperature monitoring demonstrated the ability of this applicator to generate cylindrical or sector-based coagulation necroses at depths up to 19 mm with excellent angular precision by applying 20 W/cm2. MR thermometry was performed in "real-time" with segmented echo-planar imaging gradient echo sequences. The temporal resolution was approximately 3 s/ image. The average value for the temperature baseline in liver tissue close to the applicator was 0.3 degrees C (+/- 0.6 degrees C). The thermal dose delivered in tissues was computed on-line during temperature imaging. Excellent MR compatibility was demonstrated, all MR acquisitions were performed without susceptibility artifacts or radio-frequency interferences with the ultrasound device. Thermal lesions identified on post-treatment follow up showed good correlation with online MR thermometry data. The individual differences between measurements performed visually and using MRI thermal dose maps were about 11% of volume. This study demonstrated the feasibility of thermal ablation using a phased array intraluminal ultrasound applicator and on-line MR monitoring.
机译:开展这项工作以研究在磁共振(MR)成像指导下使用圆柱形相控阵进行经食道热消融的可行性。在4.6 MHz频率下工作的64个换能器(0.45毫米宽×15毫米高)分布在直径为10.6毫米的圆柱体的周围。涂药器的头部覆盖有一个65微米厚的乳胶气球,该气球使用水密密封件连接。用脱气的水给这个信封充气,以在换能器和组织之间提供声耦合。该施加器的基本工作原理是电子旋转平面超声束。为此,以适当的延迟时间激励八个相邻的换能器,以产生平面波。通过激发一组不同的八个元素来更改曝光方向。在MR温度监控下对47个猪肝样品进行的离体实验表明,该施加器通过施加20 W / cm2的能力能够以高达19 mm的深度产生圆柱形或扇形凝结坏死,并具有出色的角度精度。 MR测温是使用分段回波平面成像梯度回波序列“实时”执行的。时间分辨率约为3 s /幅图像。靠近涂抹器的肝组织中温度基线的平均值为0.3摄氏度(+/- 0.6摄氏度)。在温度成像过程中在线计算组织中传递的热剂量。证明了其出色的MR兼容性,所有MR采集都没有受到超声设备的敏感伪影或射频干扰。在治疗后随访中发现的热损伤与在线MR测温数据显示出良好的相关性。目测和使用MRI热剂量图进行的测量之间的个体差异约为体积的11%。这项研究证明了使用相控阵腔内超声施加器和在线MR监测进行热消融的可行性。

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