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BrachyView:一种新型体内伽马相机在低剂量率前列腺近距离放射治疗中的原理验证。

BrachyView: proof-of-principle of a novel in-body gamma camera for low dose-rate prostate brachytherapy.

机构信息

Centre for Medical Radiation Physics, University of Wollongong, Wollongong, NSW 2522, Australia.

出版信息

Med Phys. 2013 Apr;40(4):041709. doi: 10.1118/1.4794487.

Abstract

PURPOSE

The conformity of the achieved dose distribution to the treatment plan strongly correlates with the accuracy of seed implantation in a prostate brachytherapy treatment procedure. Incorrect seed placement leads to both short and long term complications, including urethral and rectal toxicity. The authors present BrachyView, a novel concept of a fast intraoperative treatment planning system, to provide real-time seed placement information based on in-body gamma camera data. BrachyView combines the high spatial resolution of a pixellated silicon detector (Medipix2) with the volumetric information acquired by a transrectal ultrasound (TRUS). The two systems will be embedded in the same probe so as to provide anatomically correct seed positions for intraoperative planning and postimplant dosimetry. Dosimetric calculations are based on the TG-43 method using the real position of the seeds. The purpose of this paper is to demonstrate the feasibility of BrachyView using the Medipix2 pixel detector and a pinhole collimator to reconstruct the real-time 3D position of low dose-rate brachytherapy seeds in a phantom.

METHODS

BrachyView incorporates three Medipix2 detectors coupled to a multipinhole collimator. Three-dimensionally triangulated seed positions from multiple planar images are used to determine the seed placement in a PMMA prostate phantom in real time. MATLAB codes were used to test the reconstruction method and to optimize the device geometry.

RESULTS

The results presented in this paper show a 3D position reconstruction accuracy of the seed in the range of 0.5-3 mm for a 10-60 mm seed-to-detector distance interval (Z direction), respectively. The BrachyView system also demonstrates a spatial resolution of 0.25 mm in the XY plane for sources at 10 mm distance from Medipix2 detector plane, comparable to the theoretical value calculated for an equivalent gamma camera arrangement. The authors successfully demonstrated the capability of BrachyView for real-time imaging (using a 3 s data acquisition time) of different brachytherapy seed configurations (with an activity of 0.05 U) throughout a 60 × 60 × 60 mm(3) Perspex prostate phantom.

CONCLUSIONS

The newly developed miniature gamma camera component of BrachyView, with its high spatial resolution and real time capability, allows accurate 3D localization of seeds in a prostate phantom. Combination of the gamma camera with TRUS in a single probe will complete the BrachyView system.

摘要

目的

在前列腺近距离放射治疗过程中,实现的剂量分布与治疗计划的一致性与种子植入的准确性密切相关。不正确的种子放置会导致短期和长期并发症,包括尿道和直肠毒性。作者提出了 BrachyView,这是一种新的术中治疗计划系统概念,它基于体内伽马相机数据提供实时种子放置信息。BrachyView 将像素化硅探测器(Medipix2)的高空间分辨率与经直肠超声(TRUS)获取的体积信息相结合。这两个系统将嵌入同一个探头中,以便为术中计划和植入后剂量学提供解剖学上正确的种子位置。剂量计算基于 TG-43 方法,使用种子的实际位置。本文的目的是使用 Medipix2 像素探测器和针孔准直器,在体模中演示 BrachyView 重建低剂量率近距离放射治疗种子实时三维位置的可行性。

方法

BrachyView 结合了三个与多针孔准直器耦合的 Medipix2 探测器。从多个平面图像中进行三维三角测量的种子位置用于实时确定 PMMA 前列腺体模中的种子放置。使用 MATLAB 代码测试重建方法并优化设备几何形状。

结果

本文介绍的结果表明,在种子到探测器距离间隔(Z 方向)为 10-60mm 的范围内,种子的 3D 位置重建精度分别在 0.5-3mm 之间。BrachyView 系统还在距离 Medipix2 探测器平面 10mm 的源处展示了 0.25mm 的 XY 平面空间分辨率,与等效伽马相机排列计算的理论值相当。作者成功地演示了 BrachyView 在整个 60×60×60mm3 有机玻璃前列腺体模中实时成像(使用 3s 数据采集时间)不同近距离放射治疗种子配置(活性为 0.05U)的能力。

结论

BrachyView 新开发的微型伽马相机组件具有高空间分辨率和实时能力,可实现前列腺体模中种子的精确三维定位。伽马相机与 TRUS 在单个探头中的结合将完成 BrachyView 系统。

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