首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Real‐time monitoring of tissue displacement and temperature changes during MR‐guided high intensity focused ultrasound
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Real‐time monitoring of tissue displacement and temperature changes during MR‐guided high intensity focused ultrasound

机译:在MR引导的高强度聚焦超声中的组织位移和温度变化的实时监测

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Purpose The therapy endpoint most commonly used in MR‐guided high intensity focused ultrasound is the thermal dose. Although namely correlated with nonviable tissue, it does not account for changes in mechanical properties of tissue during ablation. This study presents a new acquisition sequence for multislice, subsecond and simultaneous imaging of tissue temperature and displacement during ablation. Methods A single‐shot echo planar imaging sequence was implemented using a pair of motion‐encoding gradients, with alternated polarities. A first ultrasound pulse was synchronized on the second lobe of the motion‐encoding gradients and followed by continuous sonication to induce a local temperature increase in ex vivo muscle and in vivo on pig liver. Lastly, the method was evaluated in the brain of two volunteers to assess method's precision. Results For thermal doses higher than the lethal threshold, displacement amplitude was reduced by 21% and 28% at the focal point in muscle and liver, respectively. Displacement value remained nearly constant for nonlethal thermal doses values. The mean standard deviation of temperature and displacement in the brain of volunteers remained below 0.8?°C and 2.5?μm. Conclusion This new fast imaging sequence provides real‐time measurement of temperature distribution and displacement at the focus during HIFU ablation. Magn Reson Med 78:1911–1921, 2017. ? 2017 International Society for Magnetic Resonance in Medicine.
机译:目的,MR引导高强度聚焦超声中最常使用的治疗终点是热量剂量。尽管与非可变组织相关,但它不考虑在消融期间组织的机械性能变化。该研究提出了一种新的采集顺序,用于在消融期间组织温度和置换的多层,亚级和同时成像。方法使用具有交替极性的一对运动编码梯度来实现单次回波平面成像序列。第一超声脉冲在运动编码梯度的第二个叶片上同步,然后连续超声处理以诱导例如猪肝脏的局部温度升高和体内。最后,在两个志愿者的大脑中评估该方法以评估方法的精确度。热剂量高于致命阈值的结果,分别在肌肉和肝脏中的焦点下降21%和28%。对于非致力的热剂量值,位移值几乎恒定。志愿者脑中的温度和位移的平均标准偏差仍低于0.8Ω°C和2.5?μm。结论这种新的快速成像序列在HIFU消融期间提供了在焦点期间的温度分布和位移的实时测量。 Magn Reson Med 78:1911-1921,2017: 2017年医学磁共振的国际社会。

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