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Estimation of LET distributions of α -particles from measured scintillator-based trajectory images

Seiichi Yamamoto, Kohei Nakanishi, Katsunori Yogo, Masao Yoshino, Kazuaki Tsukada, Hidetoshi Kikunaga, Takuya Yokokita, Kenji Shirasaki, Kei Kamada, Akira Yoshikawa, Jun Kataoka

Physics in Medicine & Biology · 2026

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Abstract Objective . Linear energy transfer (LET) measurements of α -particles are increasingly important for micro-dosimetric evaluation in targeted α -radionuclide therapy. However, direct LET measurements remain challenging due to the extremely short range of α -particles in matter. In this study, we propose a method to estimate LET distributions using quenching effects observed in α -particle trajectory images. Approach. α -particle trajectories were imaged using an ultra-high-resolution imaging system consisting of a Gd 3 Al 2 Ga 3 O 12 scintillator, an optical magnification unit, and an electron-multiplying charge-coupled device camera. α -particles from three radionuclides were measured: Am-241 (5.5 MeV), Po-213 (8.4 MeV) and Po-212 (8.8 MeV). LET distributions were estimated by taking the ratio of simulated dose profiles (without quenching) to measured depth profiles of α -particle trajectory images (including quenching). The estimated LET distributions were then compared with those obtained from simulations. Main results . The relative LET distributions along the depth direction were successfully estimated from the measured depth profiles for all α -particles with different energies. The estimated relative LET distributions differed from the simulated distributions by no more than 11%–24% over the depth range from 5 µ m to the Bragg peak position. Approximate absolute LET distributions were also evaluated. Significance . The proposed method enables a simple and effective estimation of LET distributions of α -particles from measured depth profiles of trajectory images. It is applicable to α -particles with a wide range of energies and has potential for advancing micro-dosimetry in targeted α -radionuclide therapy.

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Autor:innen
Seiichi Yamamoto, Kohei Nakanishi, Katsunori Yogo, Masao Yoshino, Kazuaki Tsukada, Hidetoshi Kikunaga, Takuya Yokokita, Kenji Shirasaki, Kei Kamada, Akira Yoshikawa, Jun Kataoka
Quelle
Physics in Medicine & Biology
Publikation
2026-01-01
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ISSN / ISBN
0031-9155, 1361-6560
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Seiichi Yamamoto, Kohei Nakanishi, Katsunori Yogo, Masao Yoshino, Kazuaki Tsukada, Hidetoshi Kikunaga, Takuya Yokokita, Kenji Shirasaki, Kei Kamada, Akira Yoshikawa, Jun Kataoka (2026). Estimation of LET distributions of α -particles from measured scintillator-based trajectory images. Physics in Medicine & Biology. https://doi.org/10.1088/1361-6560/ae99a7
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