Uyama C
Nihon Rinsho. 1994 Sep;52(9):2464-72.
Synchrotron Radiation X-ray (SR X-ray) is an extremely strong X-ray source with a photon number more than 10(4) compared with that of the current X-ray tube. X-rays obtained by monochromatizing SR X-ray have been applied to new techniques for medical diagnosis. Several studies are now being conducted at the beam site for medical use at the Accumulation Ring of the High Energy Physics Research Institute, Tsukuba. Applications being studied include (1) energy subtraction coronary angiography. (2) microdetection of metas in samples excised from subjects. (3) monochromatic X-ray computed tomography and so on. Energy subtraction coronary angiography might have a safety advantage over the current selective coronary angiography. Microdetection of mandatory metals and poisonous heavy metals in in vivo samples contributes to the development of pathologic knowledge and clinical treatment of cancer and heavy metal toxications. Monochromatic X-ray CT is expected to detect diseases in the early stage due to increased accuracy in CT values.
同步辐射X射线(SR X射线)是一种极强的X射线源,与当前的X射线管相比,其光子数超过10⁴。通过对SR X射线进行单色化获得的X射线已应用于医学诊断新技术。目前,筑波高能物理研究所积累环的束流站正在进行多项医学用途的研究。正在研究的应用包括:(1)能量减影冠状动脉造影。(2)从受试者切除的样本中微量检测金属。(3)单色X射线计算机断层扫描等。能量减影冠状动脉造影可能比当前的选择性冠状动脉造影具有安全优势。体内样本中必需金属和有毒重金属的微量检测有助于癌症和重金属中毒的病理学知识发展及临床治疗。由于CT值准确性提高,单色X射线CT有望在疾病早期进行检测。