用于磁共振引导高强度聚焦超声(MRgHIFU)热治疗设备性能评估的标准测试模体。

IF 3
S Ambrogio, R M Baêsso, F Bosio, F Fedele, K V Ramnarine, B Zeqiri, P Miloro
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引用次数: 6

摘要

目的:高强度聚焦超声(HIFU)的检测对象用于治疗的标准化和定义、质量保证(QA)、中心之间结果的比较和设备的校准。本研究描述了一种HIFU测试对象,该对象在与磁共振(MR)和超声兼容的参考材料中提供温度测量作为时间的函数。材料和方法:采用t型细丝热电偶作为传感器,评估了5种粘性加热伪影的校正方法。幻影在MR-HIFU Philips Sonalleve设备中进行了为期12个月的测试,证明了该设备性能的稳定性和有效性。结果:该研究提供了关于MR-HIFU会话的有用信息,并强调了现有QA和监测方法的潜在局限性。三个磁共振平面视图(冠状面、矢状面、横向)的MR测温读数不同,特别是当焦点靠近软组织/骨界面时,可能存在MR信号损失,温度和热剂量被低估(三个平面视图之间的差异为138%),这证明了沿整个声路径进行温度监测的重要性。结论:该测试对象易于使用,具有作为磁共振引导HIFU及超声引导设备培训、质量保证、研发的有效工具的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A standard test phantom for the performance assessment of magnetic resonance guided high intensity focused ultrasound (MRgHIFU) thermal therapy devices.

Purpose: Test objects for High Intensity Focused Ultrasound (HIFU) are required for the standardization and definition of treatment, Quality Assurance (QA), comparison of results between centers and calibration of devices. This study describes a HIFU test object which provides temperature measurement as a function of time, in a reference material compatible with Magnetic Resonance (MR) and ultrasound.Materials and methods: T-Type fine wire thermocouples were used as sensors and 5 correction methods for viscous heating artifacts were assessed. The phantom was tested in a MR-HIFU Philips Sonalleve device over a period of 12 months, demonstrating stability and validity to evaluate the performance of the device.Results: The study furnished useful information regarding the MR-HIFU sessions and highlighted potential limitations of the existing QA and monitoring methods. The importance of temperature monitoring along the whole acoustic path was demonstrated as MR Thermometry readings differed in the three MR plane views (coronal, sagittal, transverse), in particular when the focus was near a soft-tissue/bone interface, where there can be an MR signal loss with significant temperature and thermal dose underestimation (138% variation between the three plane views).Conclusions: The test object was easy to use and has potential as a valid tool for training, QA, research and development for MR guided HIFU and potentially ultrasound guided devices.

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