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机构地区:[1]苏州医学院
出 处:《核技术》1997年第5期288-291,共4页Nuclear Techniques
基 金:国家自然科学基金
摘 要:研究了机体内污染134Cs在小鼠骨骼中的滞留过程和吸收剂量诱发骨髓嗜多染红细胞(PCE)微核率的量效关系及其持续作用特性。由134Cs在骨骼中滞留动态拟合方程导出其半滞留期为5.73天;134Cs诱发骨髓PCE的微核形成率随机体摄入134Cs放射性活度的增加而升高,且在骨髓PCE微核形成率(Y,%)与摄入134Cs放射性活度(X,kBq/g)之间呈现幂函数关系(Y=0.246X0.307);由于134Cs内照射的作用持续性,其诱发的骨髓PCE微核率在连续47天的观察中仍持续增升。In this paper sustained effect of micronucleus formation in bone marrow cells induced by absorption dose of 134 Cs in skeleton was studied. The results indicated that a fitted equation to describe the retention of 134 Cs in bone marrow cells is obtained as follows: R(t)=0.0029e -0.121t . Where the T 1/2 in skeleton is 5.73d. Experimental results showed that obvious increase of micronucleus formation could be induced by 134 Cs with a threshold dose as 0.93kBq/g. The relations between injected dose(X, kBq/g) and micronucleus formation rates(Y, %) can be expressed by an power function Y=0.246X 0.307 . In accordance with the peculiarity of internal exposure with 134 Cs, sustained effect of micronucleus formation in bone marrow cells may continued to 47 days.
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