放射性核素
闪烁
核医学
放射性核素显像
图像分辨率
分辨率(逻辑)
放射化学
材料科学
化学
生物医学工程
探测器
物理
医学
光学
计算机科学
核物理学
人工智能
作者
Atsushi Yagishita,Shin’ichiro Takeda,M. Katsuragawa,T. Kawamurа,Hideaki Matsumura,Tadashi Orita,Izumi O. Umeda,Goro Yabu,Peter Caradonna,Tadayuki Takahashi,Shin Watanabe,Yousuke Kanayama,Hiroshi Mizuma,Kazunobu Ohnuki,Hirofumi Fujii
标识
DOI:10.1038/s41551-022-00866-6
摘要
The insufficient energy and spatial resolutions of radionuclide imaging with conventional scintillation detectors restrict the visualization of multiple radionuclides and of microstructures in tissue. Here we report the development and performance of an imaging system equipped with a cadmium telluride diode detector that achieves an energy resolution of 1.7% at 140 keV and a spatial resolution of 250 μm. The combination of high-resolution spectra fitted to an X-ray analysis model of the emission lines of the radionuclides in a chosen energy band allowed us to accurately determine individual radiation activities from three radionuclides to simultaneously visualize thyroid tissue (via intravenously administered iodine-125), mandibular lymph nodes (via the intramuscular injection of indium-111) and parotid lymph nodes (via a subcutaneous injection of technetium-99m) in mice. Multi-radionuclide imaging may find advantageous applications in biomedical imaging.
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