首页> 外文期刊>Sensors >The Ultrasonic Directional Tidal Breathing Pattern Sensor: Equitable Design Realization Based on Phase Information
【24h】

The Ultrasonic Directional Tidal Breathing Pattern Sensor: Equitable Design Realization Based on Phase Information

机译:超声定向潮汐呼吸模式传感器:基于相位信息的合理设计实现

获取原文
           

摘要

Pulmonary ailments are conventionally diagnosed by spirometry. The complex forceful breathing maneuver as well as the extreme cost of spirometry renders it unsuitable in many situations. This work is aimed to facilitate an emerging direction of tidal breathing-based pulmonary evaluation by designing a novel, equitable, precise and portable device for acquisition and analysis of directional tidal breathing patterns, in real time. The proposed system primarily uses an in-house designed blow pipe, 40-kHz air-coupled ultrasound transreceivers, and a radio frequency (RF) phase-gain integrated circuit (IC). Moreover, in order to achieve high sensitivity in a cost-effective design philosophy, we have exploited the phase measurement technique, instead of selecting the contemporary time-of-flight (TOF) measurement; since application of the TOF principle in tidal breathing assessments requires sub-micro to nanosecond time resolution. This approach, which depends on accurate phase measurement, contributed to enhanced sensitivity using a simple electronics design. The developed system has been calibrated using a standard 3-L calibration syringe. The parameters of this system are validated against a standard spirometer, with maximum percentage error below 16%. Further, the extracted respiratory parameters related to tidal breathing have been found to be comparable with relevant prior works. The error in detecting respiration rate only is 3.9% compared to manual evaluation. These encouraging insights reveal the definite potential of our tidal breathing pattern (TBP) prototype for measuring tidal breathing parameters in order to extend the reach of affordable healthcare in rural regions and developing areas.
机译:肺部疾病通常通过肺活量测定法诊断。复杂的强制呼吸操作以及肺活量测定的极高成本使其不适用于许多情况。这项工作旨在通过设计一种新颖,公平,精确和便携式的设备来实时采集和分析定向性潮气呼吸模式,从而促进基于潮气呼吸的肺评估的新兴方向。拟议的系统主要使用内部设计的吹管,40 kHz空气耦合超声收发器和射频(RF)相增益集成电路(IC)。此外,为了在具有成本效益的设计理念中实现高灵敏度,我们已经采用了相位测量技术,而不是选择当代的飞行时间(TOF)测量;而是采用相位测量技术。因为在潮气呼吸评估中应用TOF原理需要亚微秒至纳秒的时间分辨率。这种依靠精确相位测量的方法,通过简单的电子设计提高了灵敏度。所开发的系统已使用标准的3-L校准注射器进行了校准。该系统的参数已通过标准肺活量计进行验证,最大百分比误差低于16%。此外,已经发现提取的与潮气呼吸有关的呼吸参数与相关的先前工作相当。与手动评估相比,检测呼吸频率的误差仅为3.9%。这些令人鼓舞的见解揭示了我们的潮气呼吸模式(TBP)原型在测量潮气参数方面的确定潜力,以扩大农村地区和发展中地区负担得起的医疗保健的覆盖面。

著录项

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