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Magnetic Design of a Superconducting Toroidal Gantry for Hadron Therapy

机译:强子治疗的超导环形龙门架的磁性设计

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Hadron and proton therapy are cutting edge techniques for cancer treatment and a great development of specialized medical centers and research facilities is foreseen in the next decades. One of the main obstacles to the penetration of the use of charged particles for therapy is the construction of complex and expensive accelerating structures and rotating transfer lines, i.e., gantries, able to bend and focus the beam down to the patient. GaToroid is a novel concept of a fixed toroidal gantry, able to deliver the dose at discrete angles in the whole range of treatment energies in steady-state configuration. The steady-state current and magnetic field are appealing features, implying simplified demands on stability, powering, mechanics and cooling, as well as for the clinical perspective, allowing rapid variations of beam energy and treatment angle. In this work, we present the magnetic design of the toroidal coils composing the first instance of GaToroid, focusing the analysis on an option for a proton machine with an energy range of 70 MeV to 250 MeV. To create a proper magnetic field distribution, the coils have been designed with peculiar asymmetric shape and the windings have been graded. An initial winding geometry was obtained with an optimization aiming at maximum energy acceptance of the gantry. We are now progressing to the detailed engineering design. We describe here the overall magnet design, coil and conductor layout (LTS and HTS options), and mechanical studies involving the general torus structure. Quench protection is evaluated for LTS (Nb-Ti) configuration, as well as more innovative HTS (ReBCO) options. Finally, we present the design and the construction of a scaled-down demonstrator, intended as the proof of principle of winding procedure and mechanical coil structure.
机译:强子和质子疗法是癌症治疗的尖端技术,在未来几十年中预计将在专业医疗中心和研究设施的巨大发展。渗透使用带电粒子进行治疗的主要障碍是构建复杂且昂贵的加速结构和旋转转移线,即龙头,能够向下弯曲和将光束聚焦到患者。 Gatoroid是固定环形龙门的新颖概念,能够在稳态配置中的整个治疗能量范围内以离散角度提供剂量。稳态电流和磁场是吸引人的特征,暗示了对稳定性,电力,力学和冷却的简化要求,以及临床观点,允许快速变化光束能量和治疗角度。在这项工作中,我们介绍了构成龙舌阀第一个实例的环形线圈的磁性设计,将分析对70 MeV至250 meV的能量范围的质子机器进行分析。为了创造适当的磁场分布,线圈设计成具有特殊的不对称形状,绕组已经进行了分级。获得初始绕组几何形状,其优化旨在瞄准龙门架的最大能量接受。我们现在正在进入详细的工程设计。我们在这里描述了整体磁铁设计,线圈和导体布局(LTS和HTS选项),以及涉及一般圆环结构的机械研究。对LTS(NB-TI)配置进行评估淬火保护,以及更多创新的HTS(REBCO)选项。最后,我们展示了缩小演示器的设计和建造,旨在作为绕组过程和机械线圈结构原理的证明。

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