Beavis A W
Department of Medical Physics, Hull and East Yorkshire NHS Trust and Post Graduate Medical Institute, University of Hull and Princess Royal Hospital, Saltshouse Road, Kingston Upon Hull HU8 9HE, UK.
Br J Radiol. 2004 Apr;77(916):285-95. doi: 10.1259/bjr/22666727.
Intensity-modulated radiotherapy (IMRT) has become established in many clinics round the world and is, arguably, technically feasible in any facility. Serial tomotherapy contributed an extensive role in its introduction into the mainstream in the second half of the 1990s. In tomotherapy, literally "slice therapy", highly conformal treatments are possible because of the advantages available within the treatment planning of the IMRT process. Currently the majority of clinics implementing IMRT are doing so using conventional clinical linear accelerators (Linacs) fitted with an integrated multileaf collimator (MLC). At this point in time we may wonder if there is any scope for further dramatic changes in this new technology. As we venture from IMRT initial implementation into image guided therapy it is clear that major changes in approach are still valid and needed. If, at each treatment fraction, we can ensure that treatments are delivered accurately by integration of volumetric imaging into on-line validation, then we can attempt higher levels of conformality. A new treatment machine, the helical tomotherapy system, is available that combines the benefits of tomotherapy with on-line volumetric imaging. In this article we will review this approach and explore its features.
调强放射治疗(IMRT)已在全球许多诊所得到应用,可以说,在任何设施中技术上都是可行的。串行断层放射治疗在20世纪90年代后半期将其引入主流治疗方法中发挥了重要作用。在断层放射治疗中,从字面上理解为“切片治疗”,由于IMRT过程治疗计划中具备的优势,实现高度适形治疗成为可能。目前,大多数实施IMRT的诊所都是使用配备集成多叶准直器(MLC)的传统临床直线加速器(直线加速器)来进行的。此时,我们可能会思考这项新技术是否还有进一步重大变革的空间。当我们从IMRT的初步实施迈向图像引导治疗时,很明显,方法上的重大变革仍然是合理且必要的。如果在每个治疗分次中,我们能够通过将容积成像整合到在线验证中来确保治疗精确实施,那么我们就可以尝试更高水平的适形性。一种新的治疗机器——螺旋断层放射治疗系统已经问世,它将断层放射治疗的优势与在线容积成像相结合。在本文中,我们将回顾这种方法并探讨其特点。