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BrachyView:一种实时体内 HDR PBT 源跟踪系统的初步临床前结果,具有实时超声图像融合功能。

BrachyView: initial preclinical results for a real-time in-body HDR PBT source tracking system with simultaneous TRUS image fusion.

机构信息

Centre for Medical Radiation Physics, University of Wollongong, Wollongong, Australia.

出版信息

Phys Med Biol. 2019 Apr 5;64(8):085002. doi: 10.1088/1361-6560/ab0a7e.

Abstract

A prototype in-body gamma camera system with integrated trans-rectal ultrasound (TRUS) and associated real-time image acquisition and analysis software was developed for intraoperative source tracking in high dose rate (HDR) brachytherapy. The accuracy and temporal resolution of the system was validated experimentally using a deformable tissue-equivalent prostate gel phantom and a full clinical HDR treatment plan. The BrachyView system was able to measure 78% of the 200 source positions with an accuracy of better than 1 mm. A minimum acquisition time of 0.28 s/frame was required to achieve this accuracy, restricting dwell times to a minimum of 0.3 s. Additionally, the performance of the BrachyView-TRUS fusion probe for mapping the spatial location of the tracked source within the prostate volume was evaluated. A global coordinate system was defined by scanning the phantom with the probe in situ using a CT scanner, and was subsequently used for co-registration of the BrachyView and TRUS fields of view (FoVs). TRUS imaging was used to segment the prostate volume and reconstruct it into a three-dimensional (3D) image. Fusion of the estimated source locations with the 3D prostate image was performed using integrated 3D visualisation software. HDR BrachyView is demonstrated to be a valuable tool for intraoperative source tracking in HDR brachytherapy, capable of resolving source dwell locations relative to the prostate anatomy when combined with TRUS.

摘要

一种具有集成经直肠超声(TRUS)和相关实时图像采集与分析软件的体内伽马相机原型系统被开发出来,用于高剂量率(HDR)近距离放射治疗中的术中源追踪。该系统的准确性和时间分辨率通过使用可变形组织等效前列腺凝胶体模和完整的临床 HDR 治疗计划进行了实验验证。BrachyView 系统能够以优于 1 毫米的精度测量 78%的 200 个源位置。要达到这种精度,需要的最小采集时间为 0.28 秒/帧,限制驻留时间最短为 0.3 秒。此外,还评估了 BrachyView-TRUS 融合探头用于在前列腺体积内定位跟踪源的空间位置的性能。通过在 CT 扫描仪原位扫描探头,定义了一个全局坐标系,并随后用于 BrachyView 和 TRUS 视场(FoV)的配准。TRUS 成像用于分割前列腺体积,并将其重建为三维(3D)图像。使用集成的 3D 可视化软件将估计的源位置与 3D 前列腺图像融合。HDR BrachyView 被证明是 HDR 近距离放射治疗术中源追踪的一种有价值的工具,当与 TRUS 结合使用时,能够相对于前列腺解剖结构解析源驻留位置。

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