Yamada Ryosaku, Nishio Teiji, Kinkawa Daiki, Tanaka Taketo, Omura Mizuki, Tabata Yoji, Yoshimura Hitoshi, Kataoka Jun
Medical Physics Laboratory, Division of Health Science, Graduate School of Medicine, Osaka University, Suita-shi, Osaka, Japan.
Department of Radiology, Kouseikai Takai Hospital, Tenri-shi, Nara, Japan.
Sci Rep. 2024 Jun 24;14(1):14504. doi: 10.1038/s41598-024-65513-3.
This research aimed to identify materials capable of emitting visible light useful for dose management at ultra-high dose rate (uHDR). Various materials were irradiated with proton beams at a normal dose rate (NDR) and uHDR, and the resulting surface luminescence was captured using a high-sensitivity camera. The luminescence images were compared with the corresponding dose distributions. The luminescence of Tough Water Phantoms (Kyoto Kagaku Co. Ltd.) with various thicknesses was also observed to evaluate the depth distributions. Dose distributions were measured using two-dimensional ionization chamber detector arrays. The Tough Bone Phantom (Kyoto Kagaku Co. Ltd.) exhibited the strongest luminescence among the materials, followed by the Tough Water Phantom. The metals exhibited relatively weak luminescence. The luminescence profiles of the Tough Water Phantom, water, the Tough Lung Phantom (Kyoto Kagaku Co. Ltd.), and an acrylic were similar to the dose profiles. The luminescence distribution of the Tough Water Phantom in the depth direction was similar to that of the dose distributions. The luminescence at uHDR and NDR were approximately equivalent. The Tough Water Phantom was found to be a suitable material for dosimetry, even at uHDR. More detailed measurement data, such as wavelength data, must be collected to elucidate the luminescence mechanism.
本研究旨在识别能够发射可见光的材料,这些材料在超高剂量率(uHDR)下对剂量管理有用。用质子束以正常剂量率(NDR)和uHDR对各种材料进行辐照,并使用高灵敏度相机捕获产生的表面发光。将发光图像与相应的剂量分布进行比较。还观察了不同厚度的 Tough Water Phantoms(京都化学株式会社)的发光情况,以评估深度分布。使用二维电离室探测器阵列测量剂量分布。在这些材料中,Tough Bone Phantom(京都化学株式会社)表现出最强的发光,其次是 Tough Water Phantom。金属表现出相对较弱的发光。Tough Water Phantom、水、Tough Lung Phantom(京都化学株式会社)和丙烯酸树脂的发光轮廓与剂量轮廓相似。Tough Water Phantom在深度方向上的发光分布与剂量分布相似。uHDR和NDR下的发光大致相当。发现Tough Water Phantom即使在uHDR下也是一种适用于剂量测定的材料。必须收集更详细的测量数据,如波长数据,以阐明发光机制。