Pike B, Peters T M, Podgorsak E, Pla C, Olivier A, de Lotbinière A
Montreal Neurological Institute, McGill University, Quebec, Canada.
Appl Neurophysiol. 1987;50(1-6):269-73. doi: 10.1159/000100724.
Radiosurgical techniques are becoming increasingly popular for the selective destruction of brain lesions. To ensure precision in the procedure, set-up and treatment of lesions in this manner, we have adopted standard stereotactic methods to allow one to calculate accurately the absorbed dose and also to preserve accuracy in locating the target site in three dimensions. At McGill University, radiosurgery is performed using the dynamic technique, which utilizes the concurrent rotation of both the 10-MV photon beam linear accelerator (from 30 to 330 degrees) and the patient couch (from 75 to -75 degrees) about a common point centered on the target within the lesion. A three-dimensional treatment planning system for the calculation of dose distributions implemented in conjunction with CT, MRI and DSA stereotactic image analysis systems is presented.
放射外科技术在选择性破坏脑病变方面越来越受欢迎。为了确保以这种方式进行病变的设置和治疗的精确性,我们采用了标准的立体定向方法,以便能够准确计算吸收剂量,并在三维空间中精确确定靶点位置。在麦吉尔大学,放射外科采用动态技术进行,该技术利用10兆伏光子束直线加速器(从30度到330度)和患者治疗床(从75度到-75度)围绕病变内以靶点为中心的公共点同时旋转。本文介绍了一种与CT、MRI和DSA立体定向图像分析系统联合实施的用于计算剂量分布的三维治疗计划系统。