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首页> 外文期刊>Physics in medicine and biology. >Computational modelling of the cerebral cortical microvasculature: effect of x-ray microbeams versus broad beam irradiation
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Computational modelling of the cerebral cortical microvasculature: effect of x-ray microbeams versus broad beam irradiation

机译:脑皮质微血管系统的计算建模:X射线微沟与宽光束辐射的影响

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摘要

Microbeam Radiation Therapy is an innovative pre-clinical strategy which uses arrays of parallel, tens of micrometres wide kilo-voltage photon beams to treat tumours. These x-ray beams are typically generated on a synchrotron source. It was shown that these beam geometries allow exceptional normal tissue sparing from radiation damage while still being effective in tumour ablation. A final biological explanation for this enhanced therapeutic ratio has still not been found, some experimental data support an important role of the vasculature. In this work, the effect of microbeams on a normal microvascular network of the cerebral cortex was assessed in computer simulations and compared to the effect of homogeneous, seamless exposures at equal energy absorption. The anatomy of a cerebral microvascular network and the inflicted radiation damage were simulated to closely mimic experimental data using a novel probabilistic model of radiation damage to blood vessels. It was found that the spatial dose fractionation by microbeam arrays significantly decreased the vascular damage. The higher the peak-to-valley dose ratio, the more pronounced the sparing effect. Simulations of the radiation damage as a function of morphological parameters of the vascular network demonstrated that the distribution of blood vessel radii is a key parameter determining both the overall radiation damage of the vasculature and the dose-dependent differential effect of microbeam irradiation.
机译:MicroBeam放射治疗是一种创新的临床前策略,它使用平行,数十微米宽千千电压光子束来治疗肿瘤的阵列。这些X射线束通常在同步rotron源上产生。结果表明,这些梁几何形状允许避免辐射损伤的特殊正常组织,同时仍然有效地肿瘤消融。对于这种增强的治疗比例的最终生物学解释仍未发现,一些实验数据支持脉管系统的重要作用。在这项工作中,在计算机模拟中评估了微观次次对脑皮层的正常微血管网络的影响,并与同等能量吸收时均匀,无缝曝光的效果相比。模拟脑微血管网络的解剖和造成的辐射损伤,以利用对血管的辐射损伤的新概率模型密切模仿实验数据。发现Microbeam阵列的空间剂量分馏显着降低了血管损伤。峰谷的剂量比越高,制备效果越明显。辐射损伤的仿真作为血管网络的形态参数的函数,表明血管半径的分布是确定脉管系统的整体辐射损伤的关键参数和微沟辐射的剂量依赖性差异效果。

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