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质子共振频率偏移磁共振测温法受组织电导率变化的影响。

Proton-resonance frequency shift MR thermometry is affected by changes in the electrical conductivity of tissue.

作者信息

Peters R D, Henkelman R M

机构信息

Department of Medical Biophysics, University of Toronto, Sunnybrook and Women's College Health Science Center, Ontario, Canada.

出版信息

Magn Reson Med. 2000 Jan;43(1):62-71. doi: 10.1002/(sici)1522-2594(200001)43:1<62::aid-mrm8>3.0.co;2-1.

Abstract

The proton-resonance frequency (PRF) shift method of MR thermometry provides an easy and practical means of quantitatively monitoring in vivo temperatures for MR image-guided thermal-coagulation therapy. However, reported discrepancies in the numerical value of the PRF-thermal coefficient persist, when measured in a variety of experimental conditions and in different tissue types, both ex vivo and in vivo. In this report, a potential source of variation in the PRF-shift method of thermometry is identified that manifests as a constant incremental phase shift per unit change in temperature that is independent of the echo-time setting, when constructing temperature-sensitive phase images from a gradient-echo pulse sequence. It is proposed that this confounding phase-shift offset arises from thermally induced changes in the electrical conductivity of the material. To this end, it is demonstrated that the MR-derived temperature changes could be in error by as much as 28%, as measured from a simple calibration experiment on freshly excised cow liver. A simple method of overcoming this phase-shift offset is described.

摘要

磁共振测温的质子共振频率(PRF)偏移方法为磁共振图像引导热凝治疗中体内温度的定量监测提供了一种简便实用的手段。然而,在各种实验条件下以及在离体和体内的不同组织类型中进行测量时,PRF热系数的数值仍存在报道的差异。在本报告中,确定了测温PRF偏移方法中一个潜在的变化来源,当从梯度回波脉冲序列构建温度敏感相位图像时,它表现为温度每单位变化的恒定增量相移,且与回波时间设置无关。有人提出,这种混杂的相移偏移源于材料电导率的热致变化。为此,通过对新鲜切除的牛肝进行简单的校准实验表明,磁共振得出的温度变化误差可能高达28%。本文描述了一种克服这种相移偏移的简单方法。

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