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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Three-dimensional spatial and temporal temperature control with MR thermometry-guided focused ultrasound (MRgHIFU).
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Three-dimensional spatial and temporal temperature control with MR thermometry-guided focused ultrasound (MRgHIFU).

机译:利用MR测温引导的聚焦超声(MRgHIFU)进行三维空间和时间温度控制。

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摘要

High-intensity focused ultrasound (HIFU) is an efficient noninvasive technique for local heating. Using MRI thermal maps, a proportional, integral, and derivative (PID) automatic temperature control was previously applied at the focal point, or at several points within a plane perpendicular to the beam axis using a multispiral focal point trajectory. This study presents a flexible and rapid method to extend the spatial PID temperature control to three dimensions during each MR dynamic. The temperature in the complete volume is regulated by taking into account the overlap effect of nearby sonication points, which tends to enlarge the heated area along the beam axis. Volumetric temperature control in vitro in gel and in vivo in rabbit leg muscle was shown to provide temperature control with a precision close to that of the temperature MRI measurements. The proposed temperature control ensures heating throughout the volume of interest of up to 1 ml composed of 287 voxels with 95% of the energy deposited within its boundaries and reducing the typical average temperature overshoot to 1 degrees C.
机译:高强度聚焦超声(HIFU)是一种用于局部加热的有效无创技术。使用MRI热图,使用多螺旋焦点轨迹,事先在焦点或垂直于光束轴的平面内的几个点上应用了比例,积分和微分(PID)自动温度控制。这项研究提出了一种灵活,快速的方法,可以在每次MR动态过程中将空间PID温度控制扩展到三个维度。通过考虑附近超声处理点的重叠效应来调节整个体积中的温度,这往往会扩大沿光束轴的加热区域。凝胶中体外和兔腿部肌肉体内的体积温度控制显示出可提供与温度MRI测量接近的精度的温度控制。建议的温度控制可确保在整个目标体积中加热多达287 ml体素组成的1 ml,其中95%的能量沉积在其边界内,并将典型的平均温度过冲降低到1摄氏度。

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