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Calculated Energy Deposits from the Decay of Tritium and Other Radioisotopes Incorporated into Bacteria

机译:掺入细菌的Tri和其他放射性同位素的衰减计算出的能量沉积

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摘要

Transmutation of the radioisotope tritium occurs with the production of a low energy electron, having a range in biological material similar to the dimensions of a bacterium. A computer program was written to determine the radiation dose distributions which may be expected within a bacterium as a result of tritium decay, when the isotope has been incorporated into specific regions of the bacterium. A nonspherical model bacterium was used, represented by a cylinder with hemispherical ends. The energy distributions resulting from a wide variety of simulated labeled regions were determined; the results suggested that the nuclear region of a bacterium receives on the average significantly different per decay doses, if the labeled regions were those conceivably produced by the incorporation of thymidine-3H, uracil-3H, or 3H-amino acids. Energy distributions in the model bacterium were also calculated for the decay of incorporated 14carbon, 35sulfur, and 32phosphorous.
机译:放射性同位素tri的with变发生在低能电子的产生上,该低能电子的生物材料范围类似于细菌的大小。当同位素已被掺入细菌的特定区域时,编写了一个计算机程序来确定由于decay的衰变而在细菌内预期的辐射剂量分布。使用非球形模型细菌,以具有半球形末端的圆柱体为代表。确定了由各种模拟标记区域产生的能量分布;结果表明,如果标记的区域是通过掺入胸腺嘧啶- 3 H,尿嘧啶- 3产生的标记区域,则细菌的核区域平均每次衰变剂量会明显不同。 H或 3 H-氨基酸。还计算了掺入的 14 碳, 35 硫和 32 磷的衰变过程中模型细菌的能量分布。

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