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3特斯拉磁共振波谱测温法:校准测量的重要性。

Magnetic Resonance Spectroscopy Thermometry at 3 Tesla: Importance of Calibration Measurements.

作者信息

Verius Michael, Frank Florian, Gizewski Elke, Broessner Gregor

机构信息

1 Medizinische Universität Innsbruck, Neuroimaging Research Core Facility, Innsbruck, Austria.

2 Medizinische Universität Innsbruck, Universitätsklinik für Neurologie, Innsbruck, Austria.

出版信息

Ther Hypothermia Temp Manag. 2019 Jun;9(2):146-155. doi: 10.1089/ther.2018.0027. Epub 2018 Nov 20.

Abstract

To demonstrate the importance of calibration measurements in 3 Tesla proton magnetic resonance (MR) spectroscopy (H-MRS) thermometry for human brain temperature estimation for routine clinical applications. proton MR spectroscopy to obtain calibration constants of the water-chemical shift was conducted at 3 Tesla with a temperature-controlled phantom, containing a pH-buffered aqueous solution of N-acetyl aspartate (NAA), creatine (Cr), methylene protons of Cr (Cr2), dimethyl silapentane sulfonic acid (DSS), and sodium formate (NaFor). Estimations of absolute human brain temperature were performed utilizing the correlation of temperature to the water-chemical shift for the resonances of NAA, Cr, and Cr2. Data for calibration of the metabolites' chemical shift differences and temperature estimations were acquired with single-voxel point-resolved spectroscopy (PRESS) sequences (repetition time/echo time = 2000/30 ms; voxel size 2 × 2 × 2 cm). Spectroscopy data were quantified in the time-domain, and a Pearson correlation analysis was performed to estimate the correlation between the chemical shift of metabolites and measured temperatures. The correlation coefficients () of our calibration measurements were NAA 0.9975 (±0.0609), Cr -0.9979 (±0.0621), Cr2 - 0.9973 (±0.0577), DSS -0.9976 (±0.0615), and NaFor -0.8132 (±2.348). The mean calculated brain temperature was 37.78 ± 1.447°C, and the mean tympanic temperature was 36.83 ± 0.2456°C. Calculated temperatures derived from Cr and Cr2 provided significant ( = 0.0241 and  = 0.0210, respectively) correlations with measured temperatures ( = 0.4108 and  = -0.4194, respectively). Calibration measurements are vital for H-MRS thermometry. Small numeric differences in measured signal and data preprocessing without any calibration measurements reduce accuracy of temperature calculations, which indicates that calculated temperatures should be interpreted with caution. Application of this method for clinical purposes warrants further investigation and a more practical approach.

摘要

为证明校准测量在3特斯拉质子磁共振(MR)波谱法(H-MRS)测温中对于常规临床应用中人体脑温估计的重要性。在3特斯拉下,使用温度可控的体模进行质子MR波谱法以获取水化学位移的校准常数,该体模包含N-乙酰天门冬氨酸(NAA)、肌酸(Cr)、Cr的亚甲基质子(Cr2)、二甲基硅戊烷磺酸(DSS)和甲酸钠(NaFor)的pH缓冲水溶液。利用温度与NAA、Cr和Cr2共振的水化学位移之间的相关性进行人体脑绝对温度的估计。代谢物化学位移差异校准和温度估计的数据通过单体素点分辨波谱法(PRESS)序列采集(重复时间/回波时间 = 2000/30 ms;体素大小2×2×2 cm)。波谱数据在时域中进行量化,并进行Pearson相关分析以估计代谢物化学位移与测量温度之间的相关性。我们校准测量的相关系数()分别为NAA 0.9975(±0.0609)、Cr -0.9979(±0.0621)、Cr2 -0.9973(±0.0577)、DSS -0.9976(±0.0615)和NaFor -0.8132(±2.348)。计算出的平均脑温为37.

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