首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Improved magnetic resonance thermal imaging by combining proton resonance frequency shift (PRFS) and apparent diffusion coefficient (ADC) data.
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Improved magnetic resonance thermal imaging by combining proton resonance frequency shift (PRFS) and apparent diffusion coefficient (ADC) data.

机译:通过结合质子共振频移(PRFS)和表观扩散系数(ADC)数据来改进磁共振热成像。

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摘要

Effective thermal therapy for cancer is dependent on adequate tumor heating. Adequate heating, in turn, is dependent on reliable volumetric measurement of temperature to guide heating. Proton resonance frequency shift (PRFS) magnetic resonance imaging is frequently used for the purpose of three-dimensional temperature imaging. However, this method is susceptible to drift in the imaging magnetic field, leading to a corresponding drift in the measured temperature. A new approach to correcting for this drift is presented. It combines PRFS imaging alternated with water apparent diffusion coefficient (ADC) imaging to yield resulting thermal images that are drift corrected and possess the complementary strengths of the two methods. The drift-corrected PRFS images retain the high resolution and relatively noise-free characteristic of PRFS imaging while adding on the drift-free stability of ADC imaging. This technique is successfully demonstrated in a phantom experiment. This technique is also applicable to correcting motion-induced sudden large discontinuities in PRFS imaging, although not explicitly demonstrated in this work.
机译:有效的癌症热疗法取决于适当的肿瘤加热。适当的加热又取决于可靠的体积温度测量值来指导加热。质子共振频移(PRFS)磁共振成像经常用于三维温度成像。但是,该方法易于在成像磁场中发生漂移,从而导致测量温度发生相应的漂移。提出了一种校正这种漂移的新方法。它结合了PRFS成像和水表观扩散系数(ADC)成像,可产生经过漂移校正的热图像,并具有两种方法的互补强度。经漂移校正的PRFS图像保留了PRFS成像的高分辨率和相对无噪声的特性,同时增加了ADC成像的无漂移稳定性。此技术已在幻像实验中成功演示。该技术也可用于校正PRFS成像中运动引起的突然的大不连续性,尽管在这项工作中未明确证明。

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