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首页> 外文期刊>Proceedings of the Japan Academy, Series B. Physical and Biological Sciences >Hemoglobin magnetism in aqueous solution probed by muon spin relaxation and future applications to brain research
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Hemoglobin magnetism in aqueous solution probed by muon spin relaxation and future applications to brain research

机译:介子自旋弛豫探测水溶液中的血红蛋白磁性及其在脑研究中的未来应用

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摘要

A marked difference in spin relaxation behavior due to hemoglobin magnetism was found for positive muons (μ+) in deoxyhemoglobin in comparison with that observed in oxyhemoglobin in aqueous solution at room temperature under zero and external longitudinal magnetic fields upto 0.4 Tesla. At the same time, small but significant unique relaxation pattern was observed in nonmagnetic oxyhemoglobin. Combined with our previous measurements on hemoglobin in human blood, application of this type of measurement to the studies of the level of oxygenation in various regions of the human brain is suggested. (Communicated by Toshimitsu YAMAZAKI, M.J.A.)
机译:在室温下,零和外部纵向磁场下,在室温下,水溶液中的氧合血红蛋白与水溶液中的氧合血红蛋白相比,在正离子(μ + )的正介子(μ + )的作用下,由于血红蛋白磁性引起的自旋弛豫行为存在明显差异。 0.4特斯拉。同时,在非磁性氧合血红蛋白中观察到小的但明显的独特弛豫模式。结合我们先前对人血中血红蛋白的测量,建议将这种类型的测量应用于研究人脑各个区域的氧合水平。 (由M.J.A.山崎俊光通讯)

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