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INDUCTION OF CHROMOSOME ABERRATION IN HUMAN LYMPHOCYTES AND ITS DEPENDENCE ON X RAY ENERGY

机译:人体淋巴细胞染色体畸变的诱导及其与X射线能量的关系

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摘要

The variations of dose response with X ray energy observed with the human lymphocyte dicentric assay is examined. In order to determine reliably the initial slopes (RBE_(m)) many cells need to be analysed at low doses. Insufficient analysis may explain some reported interlaboratory differences in fitted dose-response coefficients. One such discrepancy at 150 kV_(p), E=70 keV is examined. Data are also presented for an X ray spectrum of 80 kV_(p), E=58 keV. Over the photon energy range 20 keV X rays to 1.25 MeV gamma rays RBE_(m) varies by about a factor of 5, with the lower energies being more effective. This is consistent with microdosimetric theory. By contrast, in radiological protection a radiation weighting factor of 1.0 is assumed for all photons when assessing the risk of inducing cancer at low doses. The measured variations of biological effect with photon energy have led to suggestions that the lower energies, as used for some diagnostic radiology, carry a greater risk per unit dose than is normally assumed by those involved in radiological protection. Interpretation of the data reported in this paper does not support this view.
机译:检查了用人淋巴细胞双着丝粒分析法观察到的剂量响应随X射线能量的变化。为了可靠地确定初始斜率(RBE_(m)),需要以低剂量分析许多细胞。分析不足可能解释了一些报告的实验室间拟合剂量反应系数的差异。检查了在150 kV_(p),E = 70 keV时的一种此类差异。还给出了80 kV_(p),E = 58 keV的X射线光谱数据。在光子能量范围内,20 keV X射线到1.25 MeV伽马射线RBE_(m)的变化约为5倍,较低的能量更为有效。这与微剂量学理论是一致的。相比之下,在放射防护中,当评估低剂量诱发癌症的风险时,假设所有光子的放射加权因子均为1.0。所测量的生物效应随光子能量的变化已导致建议,用于某些诊断放射学的较低能量每单位剂量的风险要比参与放射防护的人员通常所承担的风险大。本文所报告数据的解释不支持这种观点。

著录项

  • 来源
    《Radiation Protection Dosimetry》 |2003年第2期|p.131-135|共5页
  • 作者单位

    Instituto Nacional de Investigaciones Nucleares Km. 36.5 Carretera Mexico-Toluca Municipio de Ocoyoacan, 52045 Salazar Edo., Mexico;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TL72;
  • 关键词

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