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Proton Beam Radiosurgery and Radiotherapy

机译:质子束放射外科和放射治疗

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摘要

In contrast to photon irradiation, where energy deposition is distributed over a relatively large area, the physical properties of proton irradiation are such that energy deposition occurs within a small target volume. As such, proton beams represent a new platform on which specific delivery of high-dose radiation can be achieved with minimal disruption of normal tissues. Since our understanding of the radiobiology of proton radiation remains incomplete, proton beam treatment planning is based on empirical estimates of tissue effects. Despite such limitations, notable successes have been achieved in the treatment of uveal melanomas, chondrosarcomas, meningiomas, acoustic neuromas, arteriovenous malformations, malignant gliomas, and medulloblas-tomas.
机译:与光子辐照不同,在光子辐照中能量沉积分布在相对较大的区域上,质子辐照的物理特性使得能量沉积发生在较小的目标体积内。这样,质子束代表了一个新平台,在该平台上可以实现对高剂量辐射的特定传递,而对正常组织的破坏却最小。由于我们对质子辐射的放射生物学的理解仍然不完整,因此质子束治疗计划是基于组织效应的经验估计。尽管存在这些局限性,但在葡萄膜黑色素瘤,软骨肉瘤,脑膜瘤,听神经瘤,动静脉畸形,恶性神经胶质瘤和髓小瘤的治疗中取得了显著成就。

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