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基于体模的聚焦超声热效应的传统磁共振成像评估

Phantom-based assessment of focused ultrasound thermal effects with conventional magnetic resonance imaging.

作者信息

Antoniou Anastasia, Evripidou Nikolas, Filippou Antria, Georgiou Leonidas, Chrysanthou Antreas, Christofi Antonis, Roussakis Yiannis, Ioannides Cleanthis, Lyu Yuhan, Zhao Jufeng, Yu Liyang, Li Wenjun, Damianou Christakis

机构信息

Department of Electrical Engineering, Computer Engineering, and Informatics, Cyprus University of Technology, Limassol, Cyprus.

Diagnostic and Interventional Radiology Department, German Medical Institute, Limassol, Cyprus.

出版信息

Phys Med. 2025 Sep;137:105078. doi: 10.1016/j.ejmp.2025.105078. Epub 2025 Aug 23.

Abstract

BACKGROUND AND OBJECTIVE

This study presents key findings from Magnetic Resonance Imaging (MRI)-guided Focused Ultrasound (FUS) sonication experiments in a specialized gel phantom, aimed at demonstrating the effectiveness of using conventional T1-Weighted (T1-W) and T2-Weighted (T2-W) Turbo Spin Echo (TSE) sequences to assess FUS thermal effects and related system performance.

METHODS

Three custom-manufactured, single-element spherically focused ultrasonic transducers were utilized in this study. The temporal regression of lesions induced by high-power FUS in the phantom model was investigated within a 3T MRI scanner for both employed sequences. Thermal effects within the phantom were characterized through visual assessment and quantitative measurements of lesion size and contrast-to-noise ratio (CNR) on TSE images, under different focal intensities, exposure durations, and focal depths, complemented by MR thermometry data.

RESULTS

The phantom exhibited hyperintense lesions with excellent contrast on T2-W TSE imaging, chosen for its superior contrast and faster lesion resolution. Lesion size increased with intensity and exposure time, though trends varied by transducer. Cigar-shaped or non-uniform elongated lesions developed, reflecting sharp or poor transducer focusing, with signal intensity decreasing as focal depth increased. A strong correlation between lesion CNR and accumulated thermal dose was observed, emphasizing that changes in imaging contrast can consistently reflect thermal effects.

CONCLUSION

The proposed phantom-based MRI approach shows promise as a tool for routine assessment of FUS ablation system performance by monitoring lesion dynamics using conventional T2-W TSE imaging, thereby streamlining the quality assurance workflow.

摘要

背景与目的

本研究展示了在专用凝胶体模中进行磁共振成像(MRI)引导聚焦超声(FUS)超声处理实验的关键发现,旨在证明使用传统的T1加权(T1-W)和T2加权(T2-W)快速自旋回波(TSE)序列评估FUS热效应及相关系统性能的有效性。

方法

本研究使用了三个定制的单元素球形聚焦超声换能器。在3T MRI扫描仪内,针对这两种序列研究了体模模型中高功率FUS诱导的损伤的时间演变。通过视觉评估以及在不同聚焦强度、暴露持续时间和焦深条件下对TSE图像上损伤大小和对比噪声比(CNR)的定量测量来表征体模内的热效应,并辅以磁共振温度测量数据。

结果

在T2-W TSE成像上,体模呈现出具有极佳对比度的高强度损伤,因其具有卓越的对比度和更快的损伤分辨率而被选用。损伤大小随强度和暴露时间增加,不过不同换能器的趋势有所不同。出现了雪茄形或不均匀的细长形损伤,反映出换能器聚焦良好或不佳,随着焦深增加信号强度降低。观察到损伤CNR与累积热剂量之间存在强相关性,强调成像对比度的变化能够持续反映热效应。

结论

所提出的基于体模的MRI方法有望成为一种工具,通过使用传统的T2-W TSE成像监测损伤动态,对FUS消融系统性能进行常规评估,从而简化质量保证工作流程。

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