Radiotoxicology is the study of the effects of ionizing radiation on living organisms, particularly its impact on tissues and organs.
放射毒理学是研究离子化辐射对生物体,特别是对组织和器官影响的学科。
The primary concern in
radiotoxicology is to understand and minimize the risk of radiation-induced diseases like cancer.
放射毒理学的核心在于理解并尽可能降低由辐射引发的疾病,如癌症的风险。
A major aspect of radiotoxicological research involves assessing the biological effects of different types of radiation, such as alpha, beta, and gamma particles.
放射毒理学研究的一个重要方面是评估不同种类辐射(如α、β、γ粒子)对生物体的影响。
Radiobiologists use
radiotoxicology data to develop radiation protection guidelines for medical professionals and radiation workers.
放射生物学家利用放射毒理学数据为医疗专业人员和辐射工作者制定辐射防护指南。
The field of
radiotoxicology also explores potential therapeutic uses of radiation, known as radiotherapy, for treating cancer.
放射毒理学领域还研究辐射在治疗癌症方面的潜在疗法,即放射治疗。
Radiation-induced mutations can have long-term consequences in
radiotoxicology, leading to genetic disorders or even extinction of species.
辐射引发的变异在放射毒理学中可能产生长期影响,导致遗传疾病甚至物种灭绝。
The study of radiotoxicity in environmental contexts, like nuclear accidents or radioactive waste disposal, is an important part of radiological safety.
环境中的放射毒理学研究,如核事故或放射性废物处理,是放射安全的重要组成部分。
Treatment planning in radiobiology takes into account radiotoxicological effects to determine the optimal dose and treatment schedule for patients.
在放射生物学的治疗计划中,会考虑放射毒理学效应来确定患者的最优剂量和治疗时间表。
Radiotoxicologists monitor the health of individuals exposed to radiation, both occupationally and accidentally, to assess potential risks and provide medical intervention when necessary.
放射毒理学家监控接触辐射的人的健康状况,无论是职业性还是意外暴露,以评估潜在风险并在必要时提供医疗干预。
Advances in
radiotoxicology have led to improvements in shielding materials and medical technologies that reduce radiation exposure and minimize harm.
放射毒理学的进步促使了屏蔽材料和医疗技术的发展,这些技术能够减少辐射暴露并最小化伤害。
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