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分子扩散磁共振成像温度映射:在热疗中的应用

Temperature mapping with MR imaging of molecular diffusion: application to hyperthermia.

作者信息

Le Bihan D, Delannoy J, Levin R L

机构信息

Diagnostic Radiology Department, Warren Grant Magnuson Clinical Center, National Institutes of Health, Bethesda, MD 20892.

出版信息

Radiology. 1989 Jun;171(3):853-7. doi: 10.1148/radiology.171.3.2717764.

Abstract

Efficacy and safety considerations for hyperthermia (HT) cancer therapy require accurate temperature measurements throughout the heated volume. Noninvasive thermometry methods have been proposed, including magnetic resonance (MR) imaging based on the temperature dependence of the relaxation time T1. However, the temperature accuracy achieved to date with T1 measurements does not fulfill the HT requirements (1 degree C/cm). The authors propose to use molecular diffusion, for which temperature dependence is well known. Molecular diffusion is more sensitive than T1 and can be determined with high accuracy with MR imaging. Diffusion and derived temperature images were obtained with a 2 X 2-mm pixel size in a polyacrylamide gel phantom heated inside the head coil of a clinical 0.5-T whole-body MR imaging system by means of a modified clinical HT device made compatible with the system. Temperatures determined from these images with 0.8-cm2 regions of interest were found to be within 0.5 degrees C of those recorded with thermocouples placed inside the gel. The utility of this method in clinical hyperthermia is enhanced by its potential to also help monitor blood perfusion.

摘要

热疗(HT)癌症治疗的疗效和安全性考量要求在整个加热区域进行精确的温度测量。已经提出了非侵入性测温方法,包括基于弛豫时间T1的温度依赖性的磁共振(MR)成像。然而,迄今为止通过T1测量所达到的温度精度并不满足热疗要求(1摄氏度/厘米)。作者提议使用分子扩散,其温度依赖性是众所周知的。分子扩散比T1更敏感,并且可以通过MR成像高精度地测定。在一台临床0.5-T全身MR成像系统的头部线圈内,使用与该系统兼容的改良型临床热疗设备加热的聚丙烯酰胺凝胶体模中,以2×2毫米的像素尺寸获得了扩散图像和导出的温度图像。发现从这些图像中以0.8平方厘米的感兴趣区域确定的温度与放置在凝胶体内的热电偶记录的温度相差在0.5摄氏度以内。该方法在临床热疗中的实用性因其还具有帮助监测血液灌注的潜力而得到增强。

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