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使用磁共振温度反馈对经尿道超声前列腺热疗的重要因素分析。

Analysis of factors important for transurethral ultrasound prostate heating using MR temperature feedback.

作者信息

Chopra Rajiv, Wachsmuth Jeff, Burtnyk Mathieu, Haider Masoom A, Bronskill Michael J

机构信息

Sunnybrook and Women's College Health Sciences Centre, 2075 Bayview Avenue, Toronto, Ontario M4N 3M5, Canada.

出版信息

Phys Med Biol. 2006 Feb 21;51(4):827-44. doi: 10.1088/0031-9155/51/4/005. Epub 2006 Jan 25.

Abstract

The feasibility of using MR thermometry for temperature feedback to control a transurethral ultrasound heating applicator with planar transducers was investigated. The sensitivity of a temperature-based feedback algorithm to spatial (control point area, slice thickness, angular alignment) and non-spatial (imaging time, temperature uncertainty) parameters was evaluated through numerical simulations. The angular alignment of the control point with the ultrasound beam was an important parameter affecting the average spatial error in heat delivery. The other spatial parameters were less influential, thus providing an opportunity to reduce spatial resolution for increased SNR in the MR imaging. The update time was the most important non-spatial parameter determining the performance of the control algorithm. Combined non-spatial and spatial parameters achieved acceptable performance with a voxel size of 3 mm x 3 mm, a 10 mm slice thickness and a 5 s update time. Temperature uncertainty of up to 2 degrees C had little effect on the performance of the control algorithm but did reduce the average error slightly due to a systematic, noise-induced overestimation of the boundary temperature. These simulations imply that MR thermometry performed on clinical 1.5 T imaging systems is of sufficient quality for use as thermal feedback for conformal prostate thermal therapy with transurethral ultrasound heating applicators incorporating planar transducers.

摘要

研究了使用磁共振温度测量法进行温度反馈以控制带有平面换能器的经尿道超声加热装置的可行性。通过数值模拟评估了基于温度的反馈算法对空间参数(控制点面积、切片厚度、角度对准)和非空间参数(成像时间、温度不确定性)的敏感性。控制点与超声束的角度对准是影响热传递中平均空间误差的重要参数。其他空间参数的影响较小,因此有机会降低空间分辨率以提高磁共振成像中的信噪比。更新时间是决定控制算法性能的最重要非空间参数。当体素大小为3毫米×3毫米、切片厚度为10毫米且更新时间为5秒时,组合的非空间和空间参数实现了可接受的性能。高达2摄氏度的温度不确定性对控制算法的性能影响很小,但由于边界温度的系统性、噪声引起的高估,确实会略微降低平均误差。这些模拟表明,在临床1.5T成像系统上进行的磁共振温度测量法质量足以用作经尿道超声加热装置结合平面换能器的适形前列腺热疗的热反馈。

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