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On- and off-line monitoring of ion beam treatment

机译:在线和离线监测离子束处理

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摘要

Ion beam therapy is an emerging modality for high precision radiation treatment of cancer. In comparison to conventional radiation sources (photons, electrons), ion beams feature major dosimetric advantages due to their finite range with a localized dose deposition maximum, the Bragg peak, which can be selectively adjusted in depth. However, due to several sources of treatment uncertainties, full exploitation of these dosimetric advantages in clinical practice would require the possibility to visualize the stopping position of the ions in vivo, ideally in real-time. To this aim, different imaging methods have been proposed and investigated, either pre-clinically or even clinically, based on the detection of prompt or delayed radiation following nuclear interaction of the beam with the irradiated tissue. However, the chosen or ad-hoc developed instrumentation has often relied on technologies originally conceived for different applications, thus compromising on the achievable performances for the sake of cost-effectiveness. This contribution will review major examples of used instrumentation and related performances, identifying the most promising detector developments for next generation devices especially dedicated to on-line monitoring of ion beam treatment. Moreover, it will propose an original combination of different techniques in a hybrid detection scheme, aiming to make the most of complementary imaging methods and open new perspectives of image guidance for improved precision of ion beam therapy.
机译:离子束疗法是用于癌症的高精度放射治疗的新兴形式。与常规辐射源(光子,电子)相比,离子束具有主要的剂量学优势,这是由于离子束的有限范围以及局部剂量沉积最大值Bragg峰(可选择性调节深度)。然而,由于治疗不确定性的多种来源,在临床实践中充分利用这些剂量学优势将需要有可能理想地实时地可视化体内离子的停止位置。为此,基于光束与被照射组织的核相互作用后的即时或延迟辐射的检测,已经提出并研究了不同的成像方法,无论是在临床前还是在临床上。但是,选择或临时开发的仪器通常依赖于最初为不同应用而设想的技术,因此出于成本效益的考虑而损害了可达到的性能。该文稿将回顾二手仪器和相关性能的主要实例,确定下一代设备最有希望的检测器开发,尤其是专门用于离子束治疗在线监测的设备。此外,它将提出在混合检测方案中不同技术的原始组合,旨在充分利用互补的成像方法,并为提高离子束治疗的精确度开辟新的影像指导视角。

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