Barbarisi Manlio, Romanelli Pantaleo
Brain Radiosurgery, Cyberknife Center, Centro Diagnostico Italiano (CDI), Milano, Italy.
Curr Radiopharm. 2012 Oct;5(4):292-9. doi: 10.2174/1874471011205040292.
Stereotactic radiosurgery is an emerging treatment option offered to patients with Glioblastoma multiforme (GBM). Radiosurgery is performed as an outpatient procedure and provides a safe and effective non invasive treatment for focal GBM. High energy beams originating from cobalt sources placed into an helmet (Gamma-Knife) or generated by a linear accelerator (LINAC) rotating on a gantry (X-Knife, Novalis) or maneuvered by a robotic arm (CyberKnife) are delivered with submillimetric accuracy to a selected intracranial target. Treatment accuracy is provided by image-guided volumetric CT and MR studies complemented with advanced metabolic neuroimaging techniques such as CT-PET. Radiosurgery is typically used as a salvage treatment in patients with recurrent GBM to avoid further surgical procedures or as a complement to conventional fractionated radiotherapy. This paper reviews the emerging role of stereotactic radiosurgery in the treatment of GBM.
立体定向放射外科是为多形性胶质母细胞瘤(GBM)患者提供的一种新兴治疗选择。放射外科作为门诊手术进行,为局限性GBM提供了一种安全有效的非侵入性治疗方法。源自置于头盔中的钴源(伽玛刀)或由在机架上旋转的直线加速器(LINAC)产生(X刀、诺力刀)或由机械臂操控(射波刀)的高能束以亚毫米级精度投射到选定的颅内靶点。通过图像引导的容积CT和MR研究,并辅以CT-PET等先进的代谢神经成像技术来确保治疗精度。放射外科通常用作复发性GBM患者的挽救治疗,以避免进一步的外科手术,或作为传统分割放疗的补充。本文综述了立体定向放射外科在GBM治疗中的新兴作用。