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通过中子活化切片的定量放射自显影术对骨磷进行显微镜测定

MICROSCOPIC DETERMINATION OF BONE PHOSPHORUS BY QUANTITATIVE AUTORADIOGRAPHY OF NEUTRON-ACTIVATED SECTIONS.

作者信息

VINCENT J, HAUMONT S, ROELS J

出版信息

J Cell Biol. 1965 Jan;24(1):31-7. doi: 10.1083/jcb.24.1.31.

Abstract

Longitudinal sections of human cortical bone were submitted to thermal neutrons. gamma-ray spectra were recorded repeatedly during 15 days following irradiation. They showed that Na(24) is predominant as early as 3 hours after activation and that all the gamma-emitters have decayed on the 15th day. When the gamma-rays have disappeared, beta-rays are still produced by the sections. It was proved by the absorption curve in aluminium that all these beta-rays are issued from the P(32) induced in the sections by activation of P(31). Therefore autoradiograms registered 15 days after activation reveal the distribution of P(32) in the sections. gamma-ray spectra and beta-ray absorption curves of neutron activated sections of ivory demonstrated a mineral composition similar to that of bone. Autoradiograms of ivory sections activated for various times were used to establish the relation between the optical density of the autoradiograms and the radioactivity in P(32). When the bone autoradiograms are compared with the ivory standards of known radioactivity, the optical densities of single osteons (Haversian systems), can be related to their phosphorus contents. Autoradiograms and microradiograms of the same sections were examined side by side. The least calcified osteons, that contain 80 per cent of the calcium of the fully calcified osteons, also contain about 80 per cent of the phosphorus of the fully mineralized osteons. It is concluded that the Ca:P ratio remains constant while mineralization of bone tissue is being completed.

摘要

将人类皮质骨的纵向切片置于热中子中。在辐照后的15天内反复记录γ射线光谱。结果表明,早在激活后3小时,Na(24)就占主导地位,并且所有γ发射体在第15天均已衰变。当γ射线消失时,切片仍会产生β射线。通过铝中的吸收曲线证明,所有这些β射线均由激活P(31)在切片中诱导产生的P(32)发出。因此,激活后15天记录的放射自显影片揭示了切片中P(32)的分布。象牙中子激活切片的γ射线光谱和β射线吸收曲线显示出与骨相似的矿物质组成。使用不同时间激活的象牙切片的放射自显影片来建立放射自显影片的光密度与P(32)放射性之间的关系。当将骨放射自显影片与已知放射性的象牙标准进行比较时,单个骨单位(哈弗斯系统)的光密度可与其磷含量相关。并排检查同一切片的放射自显影片和微放射自显影片。钙化程度最低的骨单位含有完全钙化骨单位80%的钙,也含有完全矿化骨单位约80%的磷。得出的结论是,在骨组织矿化完成时,Ca:P比率保持恒定。

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