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基于磁共振测温的图像引导热消融术。

Image-guided thermal ablation with MR-based thermometry.

作者信息

Zhu Mingming, Sun Ziqi, Ng Chin K

机构信息

Department of Radiology, School of Medicine, University of Louisville, Louisville, KY, USA.

出版信息

Quant Imaging Med Surg. 2017 Jun;7(3):356-368. doi: 10.21037/qims.2017.06.06.

Abstract

Thermal ablation techniques such as radiofrequency, microwave, high intensity focused ultrasound (HIFU) and laser have been used as minimally invasive strategies for the treatment of variety of cancers. MR thermometry methods are readily available for monitoring thermal distribution and deposition in real time, leading to decrease of incidents of normal tissue damage around targeted lesion. HIFU and laser-induced thermal therapy (LITT) are the two widely accepted tumor ablation techniques because of their compatibility with MR systems. MRI provides multiple temperature dependent parameters for thermal imaging, such as signal intensity, T1, T2, diffusion coefficient, magnetization transfer, proton resonance frequency shift (PRFS, including phase imaging and spectroscopy) as well as frequency shift of temperature sensitive contrast agents. Absolute temperature mapping techniques, including both spectroscopic imaging using metabolites as a reference and phase imaging using fat as a reference, are immune to susceptibility effects and are not dependent on phase differences. These techniques are intrinsically more reliable than relative temperature measurement by phase mapping methods. If the limitation of low temporal and spatial resolution could be overcome, these methods may be preferred for MR-guided thermal ablation systems. As of today, the most popular MR thermal imaging method applied in tumor thermal ablation surgery is, however, still PRFS based phase mapping technique, which only provides relative temperature change and is prone to motion artifacts.

摘要

诸如射频、微波、高强度聚焦超声(HIFU)和激光等热消融技术已被用作治疗多种癌症的微创策略。磁共振测温方法可随时用于实时监测热分布和热沉积,从而减少靶向病变周围正常组织损伤的发生率。由于HIFU和激光诱导热疗(LITT)与磁共振系统兼容,因此它们是两种广泛接受的肿瘤消融技术。磁共振成像提供了多种与温度相关的参数用于热成像,如信号强度、T1、T2、扩散系数、磁化传递、质子共振频率偏移(PRFS,包括相位成像和波谱学)以及温度敏感造影剂的频率偏移。绝对温度映射技术,包括使用代谢物作为参考的波谱成像和使用脂肪作为参考的相位成像,不受磁化率效应影响,且不依赖于相位差。这些技术本质上比通过相位映射方法进行的相对温度测量更可靠。如果能够克服低时间和空间分辨率的限制,这些方法可能更适合用于磁共振引导的热消融系统。然而,截至目前,在肿瘤热消融手术中应用最广泛的磁共振热成像方法仍然是基于PRFS的相位映射技术,该技术仅提供相对温度变化,并且容易出现运动伪影。

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