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Non-Contact Vital States Identification of Trapped Living Bodies Using Ultra-Wideband Bio-Radar

机译:使用超宽带生物雷达识别捕获的生活机构的非接触式致命状态

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摘要

Identifying the vital states of trapped survivors during post-disaster rescue missions can result in improved rescue strategies and provide injury pre-diagnosis information. The most effective rescue method is the use of bio-radar based non-contact measurements. Presently, bio-radar techniques focus on detecting and locating. Herein, a method to identify vital states with an ultra-wideband bio-radar is proposed, while simulating a trapped condition with Beagle dogs. This investigation revealed three vital stages under the trapped condition: normal, transitioning, and agonal stages. Upon entering the transitioning stage, the heartrates were apparently high, and the respiratory rates increased sharply. The temperatures dropped rapidly once passing this stage. In particular, the respiratory waveforms from the bio-radar frequently change from a normal sine like curve to an “M” like curve within the transitioning stage. The accurate beginning and ending of the transitioning stage are defined by a newly proposed indicator of relative occurrence frequency. Pathological observations indicated that the fragmentation of lamellar bodies within type II alveolar cells caused the insufficiency of the lung surfactant, and further resulted in the occurrence of the “M” like curves. This pioneering work realizes the vital states identification only using a non-contact ultra-wideband bio-radar, thereby enables to infer the health conditions, life expectancy, and appropriate subsequent treatment of victims in the trapped condition. Therefore, it has the potential to promote the welfare of post-disaster trapped human victims.
机译:在灾后救援任务期间确定陷阱幸存者的重要国家可能导致救援战略改进并提供损伤预诊断信息。最有效的救援方法是使用基于生物雷达的非接触测量。目前,生物雷达技术专注于检测和定位。这里,提出了一种用超宽带生物雷达识别重要状态的方法,同时模拟与比猎犬犬的陷阱条件。本研究揭示了陷阱条件下的三个重要阶段:正常,过渡和雅际阶段。进入过渡阶段时,呼吸率显然很高,呼吸率急剧增加。一旦通过这个阶段,温度迅速下降。特别地,来自生物雷达的呼吸波形通常从曲线的正常正弦变化到转换阶段内的曲线上的“m”。过渡阶段的准确开始和结束由新出题的相对发生频率指标定义。病理观察表明,II型肺泡细胞内的层状体的破碎导致肺表面活性剂的不足,并进一步导致发生“M”曲线的发生。这种开创性工作仅实现了使用非接触式超宽带生物雷达的重要状态识别,从而使得能够推断出陷入困境条件下受害者的健康状况,预期寿命和适当的治疗。因此,它有可能促进灾后困扰的人类受害者的福利。

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  • 来源
    《Quality Control, Transactions》 |2021年第1期|6550-6559|共10页
  • 作者单位

    School of Biomedical Engineering Fourth Military Medical University Xi’an China;

    School of Biomedical Engineering Fourth Military Medical University Xi’an China;

    School of Biomedical Engineering Fourth Military Medical University Xi’an China;

    School of Biomedical Engineering Fourth Military Medical University Xi’an China;

    School of Biomedical Engineering Fourth Military Medical University Xi’an China;

    School of Biomedical Engineering Fourth Military Medical University Xi’an China;

    School of Biomedical Engineering Fourth Military Medical University Xi’an China;

    School of Biomedical Engineering Fourth Military Medical University Xi’an China;

    School of Biomedical Engineering Fourth Military Medical University Xi’an China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Temperature measurement; Dogs; Monitoring; Biomedical monitoring; Animals; Physiology; Phase locked loops;

    机译:温度测量;狗;监测;生物医学监测;动物;生理学;锁相环;

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