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Physiologically gated micro-beam radiation therapy using electronically controlled field emission x-ray source array

机译:使用电子控制场发射x射线源阵列的生理门控微束放射疗法

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Micro-beam radiation therapy (mrt) uses parallel planes of high dose narrow (10-100 um in width) radiation beams separated by a fraction of a millimeter to treat cancerous tumors. This experimental therapy method based on synchrotron radiation has been shown to spare normal tissue at up to looogy of entrance dose while still being effective in tumor eradication and extending the lifetime of tumor-bearing small animal models. Motion during the treatment can result in significant movement of micro beam positions resulting in broader beam width and lower peak to valley dose ratio (pvdr); and thus can reduce the effectiveness of the mrt. Recently we have developed the first bench-top image guided mrt system for small animal treatment using a high powered carbon nanotube (cnt) x-ray source array. The cnt field emission x-ray source can be electronically synchronized to an external triggering signal to enable physiologically gated firing of x-ray radiation to minimize motion blurring. Here we report the results of phantom study of respiratory gated mrt. A simulation of mouse breathing was performed using a servo motor. Preliminary results show that without gating the micro beam full width at tenth maximum (fwtm) can increase by 70% and pvdr can decrease up to 50%. But with proper gating; both the beam width and pvdr changes can be negligible. Future experiments will involve irradiation of mouse models and comparing histology stains between the controls and the gated irradiation.
机译:微束放射疗法(mrt)使用高剂量窄(宽度为10-100 um)放射线的平行平面(相隔几毫米的距离)来治疗癌性肿瘤。这种基于同步加速器辐射的实验治疗方法已显示出可以在进入剂量不高的情况下为正常组织提供备用,同时仍然可以有效根除肿瘤并延长荷瘤小动物模型的寿命。治疗期间的运动可导致微束位置发生明显移动,从而导致更宽的束宽和更低的峰谷剂量比(pvdr);因此会降低捷运的效力。最近,我们已经开发出了第一款使用高功率碳纳米管(cnt)X射线源阵列进行小型动物治疗的台式图像引导MRT系统。可以将cnt场发射x射线源与外部触发信号进行电子同步,以实现x射线辐射的生理门控发射,以最大程度地减少运动模糊。在这里,我们报告呼吸门控mrt的幻像研究的结果。使用伺服电机进行了鼠标呼吸的模拟。初步结果表明,不设门控,在第十个最大值(fwtm)处的微光束全宽可以增加70%,而pvdr最多可以减少50%。但是要有适当的门控;光束宽度和pvdr的变化都可以忽略不计。未来的实验将涉及辐照小鼠模型并比较对照和门控辐照之间的组织学染色。

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