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用于小动物在线治疗计划和定位验证的质子射线照相术。

Proton radiography for inline treatment planning and positioning verification of small animals.

作者信息

Müller Johannes, Neubert Christian, von Neubeck Cläre, Baumann Michael, Krause Mechthild, Enghardt Wolfgang, Bütof Rebecca, Dietrich Antje, Lühr Armin

机构信息

a OncoRay - National Center for Radiation Research in Oncology , Faculty of Medicine and University Hospital Carl Gustav Carus, Technische Universität Dresden, Helmholtz-Zentrum Dresden - Rossendorf , Dresden , Germany.

b Helmholtz-Zentrum Dresden - Rossendorf , Institute of Radiooncology - OncoRay , Dresden , Germany.

出版信息

Acta Oncol. 2017 Nov;56(11):1399-1405. doi: 10.1080/0284186X.2017.1352102. Epub 2017 Aug 23.

Abstract

INTRODUCTION

As proton therapy becomes increasingly well established, there is a need for high-quality clinically relevant in vivo data to gain better insight into the radiobiological effects of proton irradiation on both healthy and tumor tissue. This requires the development of easily applicable setups that allow for efficient, fractionated, image-guided proton irradiation of small animals, the most widely used pre-clinical model.

MATERIAL AND METHODS

Here, a method is proposed to perform dual-energy proton radiography for inline positioning verification and treatment planning. Dual-energy proton radiography exploits the differential enhancement of object features in two successively measured two-dimensional (2D) dose distributions at two different proton energies. The two raw images show structures that are dominated by energy absorption (absorption mode) or scattering (scattering mode) of protons in the object, respectively. Data post-processing allowed for the separation of both signal contributions in the respective images. The images were evaluated regarding recognizable object details and feasibility of rigid registration to acquired planar X-ray scans.

RESULTS

Robust, automated rigid registration of proton radiography and planar X-ray images in scattering mode could be reliably achieved with the animal bedding unit used as registration landmark. Distinguishable external and internal features of the imaged mouse included the outer body contour, the skull with substructures, the lung, abdominal structures and the hind legs. Image analysis based on the combined information of both imaging modes allowed image enhancement and calculation of 2D water-equivalent path length (WEPL) maps of the object along the beam direction.

DISCUSSION

Fractionated irradiation of exposed target volumes (e.g., subcutaneous tumor model or brain) can be realized with the suggested method being used for daily positioning and range determination. Robust registration of X-ray and proton radiography images allows for the irradiation of tumor entities that require conventional computed tomography (CT)-based planning, such as orthotopic lung or brain tumors, similar to conventional patient treatment.

摘要

引言

随着质子治疗日益成熟,需要高质量的临床相关体内数据,以便更好地了解质子辐射对健康组织和肿瘤组织的放射生物学效应。这需要开发易于应用的装置,以实现对小动物(最广泛使用的临床前模型)进行高效、分次、图像引导的质子照射。

材料与方法

本文提出一种用于在线定位验证和治疗计划的双能质子射线照相方法。双能质子射线照相利用在两个不同质子能量下连续测量的二维(2D)剂量分布中物体特征的差异增强。这两幅原始图像分别显示了由质子在物体中的能量吸收(吸收模式)或散射(散射模式)主导的结构。数据后处理允许在各自图像中分离这两种信号贡献。对图像进行了评估,包括可识别的物体细节以及与获取的平面X射线扫描进行刚性配准的可行性。

结果

以动物垫料单元作为配准标志,能够可靠地实现散射模式下质子射线照相和平面X射线图像的稳健、自动刚性配准。成像小鼠的可区分外部和内部特征包括身体外部轮廓、带有子结构的颅骨、肺部、腹部结构和后腿。基于两种成像模式的组合信息进行图像分析,可以实现图像增强,并计算物体沿束方向的二维水等效路径长度(WEPL)图。

讨论

使用建议的方法进行每日定位和射程确定,可以实现对暴露目标体积(例如皮下肿瘤模型或脑部)的分次照射。X射线和质子射线照相图像的稳健配准允许对需要基于传统计算机断层扫描(CT)规划的肿瘤实体进行照射,例如原位肺或脑肿瘤,类似于传统的患者治疗。

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