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Evaluation of MR thermometry with proton resonance frequency method at 7T

机译:7T时对质子共振频率法的评价MR温度法

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uantitative and non-invasive temperature mapping using magnetic resonance imaging (MRI) provides a unique way to measure temperature evolution inside biological tissues. The method is widely used in thermal ablation procedures with magnetic fields at or below 3T. In this paper, the sensitivity of the MRI thermometry at 7T was studied using a proton resonance frequency (PRF)-based technique. We first used an agarose gel phantom with MR-compatible thermometry to calibrate the temperature coefficient, and then this temperature coefficient was employed to measure the internal temperature in both ex vivo (beef muscle) and in vivo (rat) experiments using focused ultrasound heating. The temperature coefficient calibrated by the phantom was 0.0095 ppm/°C, and both the ex vivo and in vivo experiments exhibited clear temperature evolution. This quantitative study confirmed the sensitivity (<1 °C) of MR temperature mapping at 7T.
机译:使用磁共振成像(MRI)的升温和非侵入式温度映射提供了一种测量生物组织内部测量温度演化的独特方法。该方法广泛用于热消融程序,磁场在3T或3T以下。本文采用质子共振频率(PRF)技术研究了MRI温度测定的MRI温度测温的灵敏度。我们首先使用MR兼容的温度测量琼脂糖凝胶幻像以校准温度系数,然后采用该温度系数来测量exvivo(牛肉肌肉)和体内(大鼠)实验中的内部温度使用聚焦的超声加热。由幻像校准的温度系数为0.0095ppm /℃,但前体内和体内实验都表现出晴朗的温度进化。该定量研究证实了MR温度映射在7T的灵敏度(<1℃)。

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