Minimum reporting standards about dosimetry of radiation sources used in radiation research studies.

IF 1.5 4区 环境科学与生态学 Q3 BIOLOGY
Andrzej Wojcik, Isabelle Thierry-Chef, Anna A Friedl, Werner Rühm
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引用次数: 0

Abstract

The necessity of precise dosimetry and its documentation in research is less obvious than in medicine and in radiological protection. However, in radiation research, results can only be validated if experiments were carried out with sufficient precision and described with sufficient details, especially information regarding dosimetry. In order to ensure this, an initiative was launched to establish reproducible dosimetry reporting parameters in published studies. Minimum standards for reporting radiation dosimetry information were developed and published in parallel in the International Journal of Radiation Biology and Radiation Research. As editors of Radiation and Environmental Biophysics, we support this initiative and reproduce the agreed minimum irradiation parameters that should be reported in publications on radiation biology submitted to our journal.

辐射研究中使用的辐射源剂量测定最低报告标准。
与医学和放射防护相比,精确剂量测定及其记录在研究中的必要性并不明显。然而,在辐射研究中,只有在实验进行得足够精确、描述得足够详细,特别是剂量测定信息足够详细的情况下,研究结果才能得到验证。为了确保这一点,我们发起了一项倡议,在已发表的研究中建立可重复的剂量测定报告参数。辐射剂量学信息报告的最低标准已经制定,并同时在《国际辐射生物学和辐射研究杂志》上发表。作为《辐射与环境生物物理学》的编辑,我们支持这一倡议,并转载了商定的最低辐照参数,这些参数应在提交给我们期刊的辐射生物学出版物中报告。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.00
自引率
5.90%
发文量
53
审稿时长
>36 weeks
期刊介绍: This journal is devoted to fundamental and applied issues in radiation research and biophysics. The topics may include: Biophysics of ionizing radiation: radiation physics and chemistry, radiation dosimetry, radiobiology, radioecology, biophysical foundations of medical applications of radiation, and radiation protection. Biological effects of radiation: experimental or theoretical work on molecular or cellular effects; relevance of biological effects for risk assessment; biological effects of medical applications of radiation; relevance of radiation for biosphere and in space; modelling of ecosystems; modelling of transport processes of substances in biotic systems. Risk assessment: epidemiological studies of cancer and non-cancer effects; quantification of risk including exposures to radiation and confounding factors Contributions to these topics may include theoretical-mathematical and experimental material, as well as description of new techniques relevant for the study of these issues. They can range from complex radiobiological phenomena to issues in health physics and environmental protection.
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