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一种新型的呼吸率和呼吸波远程监测的高分辨率方法。

A Novel High-Resolution Method for the Respiration Rate and Breathing Waveforms Remote Monitoring.

机构信息

Novosibirsk State University, Novosibirsk, Russia.

Rzhanov Institute of Semiconductor Physics SB RAS, 13 Lavrentyev av., Novosibirsk, Russia, 630090.

出版信息

Ann Biomed Eng. 2018 Jul;46(7):960-971. doi: 10.1007/s10439-018-2018-6. Epub 2018 Apr 4.

Abstract

A search for robust noninvasive methods permitting to discern the respiration subtle peculiarities in mammals is a topical issue. A novel approach called "sorption-enhanced infrared thermography" (SEIRT), helping to solve this problem, is described. Its benefits spring from the integration of the infrared thermography (IRT) and chemical physics (phase transition heat release/absorption) within a single method. The SEIRT opportunities were verified in the investigation of 42 humans, 49 rats and 4 minipigs whose breathing waveforms were revealed to the last detail. It is shown that the SEIRT-obtained breathing-conditioned temperature response may exceed 10 °C (!) even in small animals (rats) and that the SEIRT sensitivity is 4.5-250 times higher than that of the matched IRT-based techniques. The new method is validated by a comparison with that based on thorax breathing movement (TBM). It is shown that the SEIRT-determined breaths have a close correlation with those determined via TBM (r = + 1.000, p ≪ 0.05); this is also true for breathing intervals (r = + 0.9772, p ≪ 0.05). SEIRT opens up the way to a high-resolution noncontact quantitative evaluation of respiration rate and breathing waveforms in both humans and animals. It may become a cutting-edge technique in diagnostic medicine and biomedical research.

摘要

寻找稳健的无创方法以辨别哺乳动物的呼吸细微特征是一个热门话题。本文描述了一种称为“吸附增强红外热成像”(SEIRT)的新方法,该方法有助于解决这个问题。其优势源于将红外热成像(IRT)和化学物理(相变释热/吸热)集成在单个方法中。通过对 42 名人类、49 只大鼠和 4 只小型猪进行研究,验证了 SEIRT 的应用机会,这些动物的呼吸波形被详细揭示。结果表明,SEIRT 获得的呼吸条件温度响应甚至在小动物(大鼠)中也可以超过 10°C(!),并且 SEIRT 的灵敏度比匹配的基于 IRT 的技术高 4.5-250 倍。该新方法通过与基于胸廓呼吸运动(TBM)的方法进行比较得到验证。结果表明,SEIRT 确定的呼吸与通过 TBM 确定的呼吸密切相关(r=+1.000,p<0.05);呼吸间隔也是如此(r=+0.9772,p<0.05)。SEIRT 为在人类和动物中进行高分辨率非接触式呼吸率和呼吸波形的定量评估开辟了道路。它可能成为诊断医学和生物医学研究中的一项前沿技术。

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