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运动稳健型磁共振测温技术进展。

Technical advances in motion-robust MR thermometry.

作者信息

Kim Kisoo, Narsinh Kazim, Ozhinsky Eugene

机构信息

Department of Radiology & Biomedical Imaging, University of California, San Francisco, California, USA.

出版信息

Magn Reson Med. 2024 Jul;92(1):15-27. doi: 10.1002/mrm.30057. Epub 2024 Mar 19.

Abstract

Proton resonance frequency shift (PRFS) MR thermometry is the most common method used in clinical thermal treatments because of its fast acquisition and high sensitivity to temperature. However, motion is the biggest obstacle in PRFS MR thermometry for monitoring thermal treatment in moving organs. This challenge arises because of the introduction of phase errors into the PRFS calculation through multiple methods, such as image misregistration, susceptibility changes in the magnetic field, and intraframe motion during MRI acquisition. Various approaches for motion correction have been developed for real-time, motion-robust, and volumetric MR thermometry. However, current technologies have inherent trade-offs among volume coverage, processing time, and temperature accuracy. These tradeoffs should be considered and chosen according to the thermal treatment application. In hyperthermia treatment, precise temperature measurements are of increased importance rather than the requirement for exceedingly high temporal resolution. In contrast, ablation procedures require robust temporal resolution to accurately capture a rapid temperature rise. This paper presents a comprehensive review of current cutting-edge MRI techniques for motion-robust MR thermometry, and recommends which techniques are better suited for each thermal treatment. We expect that this study will help discern the selection of motion-robust MR thermometry strategies and inspire the development of motion-robust volumetric MR thermometry for practical use in clinics.

摘要

质子共振频率偏移(PRFS)磁共振测温法是临床热疗中最常用的方法,因为它采集速度快且对温度敏感。然而,运动是PRFS磁共振测温法监测运动器官热疗的最大障碍。这一挑战的出现是由于多种方法会在PRFS计算中引入相位误差,如图像配准错误、磁场中的磁化率变化以及磁共振成像采集期间的帧内运动。针对实时、运动稳健且体部磁共振测温法,已经开发出了各种运动校正方法。然而,当前技术在容积覆盖范围、处理时间和温度准确性之间存在内在权衡。应根据热疗应用来考虑并选择这些权衡。在热疗中,精确的温度测量比极高的时间分辨率要求更为重要。相比之下,消融手术需要稳健的时间分辨率来准确捕捉快速的温度上升。本文全面综述了当前用于运动稳健磁共振测温法的前沿磁共振成像技术,并推荐了哪些技术更适合每种热疗。我们期望这项研究将有助于辨别运动稳健磁共振测温法策略的选择,并激发用于临床实际应用的运动稳健体部磁共振测温法的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8a0/11132643/c678f59e1457/nihms-1996367-f0001.jpg

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