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MatBED_B&C:一种用于在B&C模型中对伽玛刀放射外科进行回顾性研究的三维生物有效剂量分析方法。

MatBED_B&C: A 3-dimensional biologically effective dose analytic approach for the retrospective study of gamma knife radiosurgery in a B&C model.

作者信息

Tang Ke, Zhang Nan, Yuan Xiaodong, Qian Zenghui, Li Yang, Feng Xu

机构信息

Department of Neurosurgery, Chinese PLA General Hospital, 28 Fuxing Road, Beijing, PR China.

Department of Neurosurgery, Huashan Hospital, Fudan University, 12 Wulumuqi (Middle) Road, Shanghai, PR China.

出版信息

MethodsX. 2023 Aug 5;11:102320. doi: 10.1016/j.mex.2023.102320. eCollection 2023 Dec.

Abstract

The biological effect of irradiation is not solely determined by the physical dose. Gamma knife radiosurgery may be influenced by dose rate, beam-on-time, numbers of iso-centers, the gap between the individual iso-centers, and the dose‒response of various tissues. The biologically effective dose (BED) for radiosurgery considers these issues. Millions of patients treated with Models B and C provide a vast database to mine BED-related information. This research aims to develop MatBED_B&C, a 3-dimensional (3D) BED analytic approach, to generate a BED for individual voxels in the calculation matrix with related parameters extracted from Gammaplan. This approach calculates the distribution profiles of the BED in radiosurgical targets and organs at risk. A BED calculated on a voxel-by-voxel basis can be used to show the 3D morphology of the iso-BED surface and visualize the BED spatial distribution in the target. A 200 × 200 × 200 matrix can cover a greater range of the organ at risk. The BED calculated by MatBED_B&C can also be used to form BED-volume histograms to generate plan quality metrics, which will be studied in a retrospective study of gamma knife radiosurgery to guide future BED planning.•We develop MatBED_B&C to calculate the 3D BED in radiosurgical targets.•The BED of MatBED_B&C can visualize the BED spatial distribution profiles.•The BED of MatBED_B&C will generate plan quality metrics studied in a retrospective study.

摘要

辐射的生物学效应并非仅由物理剂量决定。伽玛刀放射外科手术可能会受到剂量率、照射时间、等中心点数量、各等中心点之间的间距以及各种组织的剂量反应的影响。放射外科手术的生物学有效剂量(BED)考虑了这些因素。数百万接受B型和C型设备治疗的患者提供了一个庞大的数据库,可从中挖掘与BED相关的信息。本研究旨在开发MatBED_B&C,一种三维(3D)BED分析方法,以便根据从伽玛计划(Gammaplan)中提取的相关参数,为计算矩阵中的各个体素生成BED。该方法可计算放射外科手术靶区和危及器官中BED的分布情况。基于逐个体素计算得到的BED可用于显示等BED表面的三维形态,并可视化靶区内BED的空间分布。一个200×200×200的矩阵能够覆盖更大范围的危及器官。MatBED_B&C计算得到的BED还可用于形成BED-体积直方图,以生成计划质量指标,这将在伽玛刀放射外科手术的回顾性研究中进行探讨,以指导未来的BED规划。

•我们开发MatBED_B&C来计算放射外科手术靶区的三维BED。

•MatBED_B&C的BED能够可视化BED的空间分布情况。

•MatBED_B&C的BED将生成在回顾性研究中探讨的计划质量指标。

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