首页> 外文会议>IEEE/NIH Life Science Systems and Applications Workshop >Non-Ionizing Radiation-Specific Biomarker Research at the United States Air Force Research Laboratory
【24h】

Non-Ionizing Radiation-Specific Biomarker Research at the United States Air Force Research Laboratory

机译:在美国空军研究实验室的非电离辐射特异性生物标志物研究

获取原文

摘要

Military communication, detection and ranging, and recent weapons technologies involve various forms of directed energy (DE) that are considered nonionizing, such as radio waves, microwaves, Terahertz- and optical radiation. Severe overexposure to DE is known to cause damage to living tissue through either photochemical or thermal mechanisms. However, below the standard-defined damage thresholds of DE, biological changes are more difficult to ascertain. Past experimentation has shown that DE induces hyperthermia, localized or systemic, that will resolve itself over time. No mutagenic effects, tumor promotion, or changes in fertility and longevity have been observed. Owing to the relatively low photon energies produced by DE devices, the biological effects at the molecular level involve multiple markers that exhibit only moderate changes. For this reason, new approaches to DE-induced biomarker detection and analysis need to be taken, which meet required sensitivity, sampling scope, depth of analysis, and accessibility. Technology development efforts need to focus on harnessing the gamut of biomedical knowledge to maximize diagnostic power and deliver appropriate answers in real-time to the end user. This vision of instant diagnosis is shared by the biomedical community as well as the Department of Defense. The Air Force Research Laboratory and medical research detachments of the US Army and Navy are jointly performing DE-related bioeffects research, characterizing the impact of exposure on humans, protecting the war-fighter on the battlefield, assuring the safe operation of DE devices, evaluating exposure-related health issues, and contributing to safety standards.
机译:军事通信,检测和测距以及最近的武器技术涉及各种形式的定向能量(DE),这些能量(DE)被认为是非离子的,例如无线电波,微波,太赫兹和光学辐射。已知对de的严重过度过度曝光通过光化学或热机制造成对活组织的损害。然而,低于标准定义的损伤阈值,生物变化更难以确定。过去的实验表明,DE诱导热疗,局部或全身,这将随时间解决。已经观察到没有致突效应,肿瘤促进或生育和寿命的变化。由于DE器件产生的相对低的光子能量,分子水平的生物学效应涉及多个标记,其表现出仅适度的变化。因此,需要采取新的去除生物标志物检测和分析方法,这符合所需的灵敏度,采样范围,分析深度和可访问性。技术开发工作需要专注于利用生物医学知识的色域来最大限度地提高诊断能力,并实时向最终用户提供适当的答案。即时诊断的这种愿景是由生物医学社区和国防部共享的。美国陆军和海军的空军研究实验室和医学研究脱离是共同表现出相关的生物效应研究,其特征是暴露对人类的影响,保护战斗机在战场上的战斗机,确保DE器件的安全操作,评估与曝光相关的健康问题,并为安全标准做出贡献。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号