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正交千伏 X 射线微束在靶区产生实束的同时保护近侧组织。

Merging Orthovoltage X-Ray Minibeams spare the proximal tissues while producing a solid beam at the target.

机构信息

Department of Radiology, Stony Brook University Hospital, Stony Brook, NY, 11794, USA.

Department of Radiation Oncology, Stony Brook University Hospital, Stony Brook, NY, 11794, USA.

出版信息

Sci Rep. 2019 Feb 4;9(1):1198. doi: 10.1038/s41598-018-37733-x.

Abstract

Conventional radiation therapy of brain tumors often produces cognitive deficits, particularly in children. We investigated the potential efficacy of merging Orthovoltage X-ray Minibeams (OXM). It segments the beam into an array of parallel, thin (~0.3 mm), planar beams, called minibeams, which are known from synchrotron x-ray experiments to spare tissues. Furthermore, the slight divergence of the OXM array make the individual minibeams gradually broaden, thus merging with their neighbors at a given tissue depth to produce a solid beam. In this way the proximal tissues, including the cerebral cortex, can be spared. Here we present experimental results with radiochromic films to characterize the method's dosimetry. Furthermore, we present our Monte Carlo simulation results for physical absorbed dose, and a first-order biologic model to predict tissue tolerance. In particular, a 220-kVp orthovoltage beam provides a 5-fold sharper lateral penumbra than a 6-MV x-ray beam. The method can be implemented in arc-scan, which may include volumetric-modulated arc therapy (VMAT). Finally, OXM's low beam energy makes it ideal for tumor-dose enhancement with contrast agents such as iodine or gold nanoparticles, and its low cost, portability, and small room-shielding requirements make it ideal for use in the low-and-middle-income countries.

摘要

常规的脑肿瘤放射治疗常常会导致认知缺陷,尤其是在儿童中。我们研究了合并正交千伏 X 射线微束(Orthovoltage X-ray Minibeams,OXM)的潜在疗效。它将光束分割成一束平行的、薄的(约 0.3 毫米)、平面的光束,称为微束,同步加速器 X 射线实验表明,这种光束能够保护组织。此外,OXM 阵列的轻微发散使各个微束逐渐变宽,从而在给定的组织深度与相邻的微束合并,形成一个实心的光束。通过这种方式,可以保护包括大脑皮层在内的近端组织。本文通过放射色迹胶片呈现了实验结果,以描述该方法的剂量学特征。此外,我们还展示了我们的蒙特卡罗模拟结果,用于计算物理吸收剂量,以及一个用于预测组织耐受能力的一阶生物模型。特别是,220-kVp 正交千伏 X 射线提供了比 6-MV X 射线更锐利的 5 倍横向半影。该方法可以在弧形扫描中实施,包括容积调强弧形治疗(VMAT)。最后,OXM 的低束能量使其非常适合与碘或金纳米颗粒等造影剂联合进行肿瘤剂量增强,并且其低成本、便携性和对屏蔽空间的小需求使其非常适合在中低收入国家使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/383c/6362296/b5b3eeae28cf/41598_2018_37733_Fig1_HTML.jpg

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