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一种针对磁共振引导肝消融优化的相控阵高强度聚焦超声换能器的新概念:具体实现与初步研究

A Novel Concept of a Phased-Array HIFU Transducer Optimized for MR-Guided Hepatic Ablation: Embodiment and First Studies.

作者信息

Lorton Orane, Guillemin Pauline C, M'Rad Yacine, Peloso Andrea, Boudabbous Sana, Charbonnier Caecilia, Holman Ryan, Crowe Lindsey A, Gui Laura, Poletti Pierre-Alexandre, Ricoeur Alexis, Terraz Sylvain, Salomir Rares

机构信息

Image Guided Interventions Laboratory (GR-949), Faculty of Medicine, University of Geneva, Geneva, Switzerland.

Visceral Surgery Division, University Hospitals of Geneva, Geneva, Switzerland.

出版信息

Front Oncol. 2022 May 30;12:899440. doi: 10.3389/fonc.2022.899440. eCollection 2022.

Abstract

PURPOSE

High-intensity focused ultrasound (HIFU) is challenging in the liver due to the respiratory motion and risks of near-/far-field burns, particularly on the ribs. We implemented a novel design of a HIFU phased-array transducer, dedicated to transcostal hepatic thermo-ablation. Due to its large acoustic window and strong focusing, the transducer should perform safely for this application.

MATERIAL AND METHODS

The new HIFU transducer is composed of 256 elements distributed on 5 concentric segments of a specific radius (either 100, 111, or 125 mm). It has been optimally shaped to fit the abdominal wall. The shape and size of the acoustic elements were optimized for the largest emitting surface and the lowest symmetry. Calibration tests have been conducted on tissue-mimicking gels under 3-T magnetic resonance (MR) guidance. MR-guided HIFU treatment was conducted in two pigs, aiming to create thermal ablation deep in the liver without significant side effects. Imaging follow-up was performed at D0 and D7. Sacrifice and post-mortem macroscopic examination occurred at D7, with the ablated tissue being fixed for pathology.

RESULTS

The device showed -3-dB focusing capacities in a volume of 27 × 46 × 50 mm as compared with the numerical simulation volume of 18 × 48 × 60 mm. The shape of the focal area was in millimeter-range agreement with the numerical simulations. No interference was detected between the HIFU sonication and the MR acquisition. , the temperature elevation in perivascular liver parenchyma reached 28°C above physiological temperature, within one breath-hold. The lesion was visible on Gd contrast-enhanced MRI sequences and post-mortem examination. The non-perfused volume was found in pig #1 and pig #2 of 8/11, 6/8, and 7/7 mm along the LR, AP, and HF directions, respectively. No rib burns or other near-field side effects were visually observed on post-mortem gross examination. High-resolution contrast-enhanced 3D MRI indicated a minor lesion on the sternum.

CONCLUSION

The performance of this new HIFU transducer has been demonstrated and . The transducer meets the requirement to perform thermal lesions in deep tissues, without the need for rib-sparing means.

摘要

目的

由于呼吸运动以及近场/远场烧伤风险,尤其是肋骨部位的风险,高强度聚焦超声(HIFU)在肝脏治疗中具有挑战性。我们设计了一种新型的HIFU相控阵换能器,专门用于经肋肝脏热消融。由于其较大的声学窗口和强大的聚焦能力,该换能器在此应用中应能安全运行。

材料与方法

新型HIFU换能器由分布在特定半径(100、111或125毫米)的5个同心段上的256个元件组成。其形状经过优化以贴合腹壁。声学元件的形状和尺寸针对最大发射表面和最低对称性进行了优化。在3-T磁共振(MR)引导下对仿组织凝胶进行了校准测试。在两只猪身上进行了MR引导的HIFU治疗,旨在在肝脏深部创建热消融且无明显副作用。在第0天和第7天进行成像随访。在第7天进行处死和尸检宏观检查,将消融组织固定用于病理检查。

结果

与数值模拟体积18×48×60毫米相比,该设备在27×46×50毫米的体积内显示出-3dB聚焦能力。焦区形状与数值模拟在毫米范围内相符。未检测到HIFU超声处理与MR采集之间的干扰。在一次屏气内,肝实质血管周围温度升高达到比生理温度高28°C。在钆增强MRI序列和尸检检查中可见病变。在猪1和猪2中,分别沿LR、AP和HF方向发现非灌注体积为8/11、6/8和7/7毫米。在尸检大体检查中未目视观察到肋骨烧伤或其他近场副作用。高分辨率钆增强3D MRI显示胸骨上有轻微病变。

结论

已证明这种新型HIFU换能器的性能。该换能器满足在深部组织中进行热损伤的要求,无需采取保护肋骨的措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ecb/9235567/d34bc11267cf/fonc-12-899440-g001.jpg

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