MRI监测下头颅幻象肿瘤模型的聚焦超声:颅骨阻塞对聚焦加热的影响。

IF 0.7 Q4 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Journal of Medical Physics Pub Date : 2025-01-01 Epub Date: 2025-03-07 DOI:10.4103/jmp.jmp_177_24
Anastasia Antoniou, Antreas Chrysanthou, Leonidas Georgiou, Antonis Christofi, Yiannis Roussakis, Cleanthis Ioannides, Kyriakos Spanoudes, Jufeng Zhao, Liyang Yu, Christakis Damianou
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引用次数: 0

摘要

目的:本研究介绍了一系列磁共振成像(MRI)引导的聚焦超声(MRgFUS)超声在解剖学精确的头部幻影上进行的结果,并嵌入了肿瘤模拟器,以评估薄聚合物颅骨模拟物部分和完全消融阻塞肿瘤的有效性。材料和方法:肿瘤模拟器使用与mri兼容聚焦超声(FUS)机器人系统集成的单元件凹形换能器进行单和网格超声。所有实验均在高场MRI扫描仪中进行,利用质子共振频率测温和t2加权(T2-W)涡轮自旋回波(TSE)成像来评估诱导热效应。通过1毫米厚三维打印聚合物颅骨模拟物的FUS传输与通过颅骨模型的圆孔的无阻碍超声进行比较。结果:T2-W TSE显像显示肿瘤与高强度的FUS病变有明显的对比。通过机器人辅助的网格消融实现了完全的肿瘤覆盖,没有颅骨模拟物,也没有1毫米的树脂颅骨模拟物介入光束。与无阻碍超声相比,树脂头盖骨的衰减最小,可使焦点温度变化减少约20%,但仍有利于光束聚焦,将肿瘤温度提高到消融水平。结论:该研究为薄的生物相容性植入物的潜在应用提供了初步证据,该植入物可以暂时替代颅骨部分,从而促进使用单元件换能器对无法手术的肿瘤进行MRgFUS消融。肿瘤嵌入的头部幻影被证明是有效的测试MRgFUS肿瘤学方案和设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Focused Ultrasound Sonications of Tumor Model in Head Phantom under MRI Monitoring: Effect of Skull Obstruction on Focal Heating.

Purpose: This study presents the outcomes of a series of magnetic resonance imaging (MRI)-guided focused ultrasound (MRgFUS) sonications performed on an anatomically accurate head phantom with an embedded tumor simulator to evaluate the effectiveness of partial and complete tumor ablation with obstruction from thin polymer skull mimics.

Materials and methods: The tumor simulator was subjected to single and grid sonications using a single-element concave transducer integrated with an MRI-compatible focused ultrasound (FUS) robotic system. All experiments were carried out in a high-field MRI scanner utilizing proton resonance frequency thermometry and T2-weighted (T2-W) turbo spin echo (TSE) imaging to evaluate the induced thermal effects. FUS transmission through 1-mm thick three-dimensional-printed polymer skull mimics was compared to unobstructed sonication through a circular aperture in the skull model.

Results: T2-W TSE imaging demonstrated sharp contrast between the tumor and hyperintense FUS lesions. Complete tumor coverage was achieved through robotic-assisted grid ablation without a skull mimic, as well as with a 1-mm resin skull mimic intervening in the beam. With the lowest attenuation among tested polymers, the resin skull resulted in approximately a 20% reduction in focal temperature change compared to unobstructed sonication, yet still facilitated sharp beam focusing, raising the tumor temperature to ablative levels.

Conclusions: The study provides preliminary evidence for the potential application of a thin biocompatible implant to temporarily replace a skull portion facilitating MRgFUS ablation of inoperable tumors using a single-element transducer. The tumor-embedded head phantom was proven effective for testing MRgFUS oncological protocols and equipment.

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来源期刊
Journal of Medical Physics
Journal of Medical Physics RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
1.10
自引率
11.10%
发文量
55
审稿时长
30 weeks
期刊介绍: JOURNAL OF MEDICAL PHYSICS is the official journal of Association of Medical Physicists of India (AMPI). The association has been bringing out a quarterly publication since 1976. Till the end of 1993, it was known as Medical Physics Bulletin, which then became Journal of Medical Physics. The main objective of the Journal is to serve as a vehicle of communication to highlight all aspects of the practice of medical radiation physics. The areas covered include all aspects of the application of radiation physics to biological sciences, radiotherapy, radiodiagnosis, nuclear medicine, dosimetry and radiation protection. Papers / manuscripts dealing with the aspects of physics related to cancer therapy / radiobiology also fall within the scope of the journal.
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