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首页> 外文期刊>Magnetic Resonance in Medicine >Spectrally selective pencil-beam navigator for motion compensation of MR-guided high-intensity focused ultrasound therapy of abdominal organs
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Spectrally selective pencil-beam navigator for motion compensation of MR-guided high-intensity focused ultrasound therapy of abdominal organs

机译:频谱选择性笔形电子束导航器,用于MR引导的腹部器官高强度聚焦超声治疗的运动补偿

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MR-guided high-intensity focused ultrasound (MR-HIFU) is a noninvasive technique for depositing thermal energy in a controlled manner deep within the body. However, the MR-HIFU treatment of mobile abdominal organs is problematic as motion-related thermometry artifacts need to be corrected and the focal point position must be updated in order to follow the moving organ to avoid damaging healthy tissue. In this article, a fat-selective pencil-beam navigator is proposed for real-time monitoring and compensation of through-plane motion. As opposed to the conventional spectrally nonselective navigator, the fat-selective navigator does not perturb the water–proton magnetization used for proton resonance frequency shift thermometry. This allows the proposed navigator to be placed directly on the target organ for improved motion estimation accuracy. The spectral and spatial selectivity of the proposed navigator pulse is evaluated through simulations and experiments, and the improved slice tracking performance is demonstrated in vivo by tracking experiments on a human kidney and on a human liver. The direct motion estimation provided by the fat-selective navigator is also shown to enable accurate motion compensated MR-HIFU therapy of in vivo porcine kidney, including motion compensation of thermometry and beam steering based on the observed three-dimensional kidney motion. Magn Reson Med, 2011. © 2011 Wiley-Liss, Inc.
机译:MR引导的高强度聚焦超声(MR-HIFU)是一种非侵入性技术,用于以受控方式在体内深处沉积热能。但是,对移动腹部器官的MR-HIFU治疗存在问题,因为需要校正与运动有关的体温测量伪影,并且必须更新焦点位置以便跟随移动器官,以免损坏健康组织。在本文中,提出了一种选脂笔形导航器,用于实时监控和补偿平面运动。与常规的光谱非选择导航器相反,脂肪选择导航器不会干扰质子共振频移测温法使用的水-质子磁化强度。这允许将建议的导航器直接放置在目标器官上,以提高运动估计的准确性。通过模拟和实验评估了拟议中的导航脉冲的光谱和空间选择性,并通过在人体肾脏和人体肝脏上的追踪实验在体内证明了改进的切片追踪性能。还显示了由脂肪选择导航器提供的直接运动估计,可以实现体内猪肾脏的精确运动补偿MR-HIFU治疗,包括基于观察到的三维肾脏运动的体温计的运动补偿和射束转向。 Magn Reson Med,2011年。©2011 Wiley-Liss,Inc.。

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