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Evaluation of Ultrasound-Based Sensor to Monitor Respiratory and Nonrespiratory Movement and Timing in Infants

机译:基于超声的传感器监测婴儿呼吸和非呼吸运动及时间的评估

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摘要

To describe and validate a noncontacting sensor that used reflected ultrasound to separately monitor respiratory, nonrespiratory, and caretaker movements of infants. An in-phase and quadrature (I & Q) detection scheme provided adequate bandwidth, in conjunction with postdetection filtering, to separate the three types of movement. The respiratory output was validated by comparing it to the electrical activity of the diaphragm (Edi) obtained from an infant ventilator in 11 infants. The nonrespiratory movement output was compared to movement detected by miniature accelerometers attached to the wrists, ankles, and heads of seven additional infants. Caretaker movement was compared to visual observations annotated in the recordings. The respiratory rate determined by the sensor was equivalent to that from the Edi signal. The sensor could detect the onset of inspiration significantly earlier than the Edi signal (23+/−69 ms). Nonrespiratory movement was identified with an agreement of 0.9 with the accelerometers. It potentially interfered with the respiratory output an average of 4.7+/−4.5% and 14.9+/15% of the time in infants not requiring or on ventilatory support, respectively. Caretaker movements were identified with 98% sensitivity and specificity. The sensor outputs were independent of body coverings or position. This single, noncontacting sensor can independently quantify these three types of movement. : It is feasible to use the sensor as trigger for synchronizing mechanical ventilators to spontaneous breathing, to quantify overall movement, to determine sleep state, to detect seizures, and to document the amount and effects of caretaker activity in infants.
机译:描述和验证一种非接触式传感器,该传感器使用反射超声波分别监视婴儿的呼吸,非呼吸和看守者运动。同相和正交(I&Q)检测方案结合后检测滤波提供了足够的带宽,以分离三种类型的运动。通过将呼吸输出与11例婴儿的呼吸机获得的the肌(Edi)的电活动进行比较来验证呼吸输出。将非呼吸运动输出与通过附加在另外七个婴儿的手腕,脚踝和头部的微型加速度计检测到的运动进行比较。将看守人的运动与记录中注释的视觉观察进行了比较。传感器确定的呼吸频率等于Edi信号的呼吸频率。传感器可以比Edi信号(23 +/- 69 ms)更早地检测到吸气的开始。确认非呼吸运动与加速度计的一致性为0.9。在不需要或需要通气支持的婴儿中,它平均有4.7%/-4.5%和14.9 + / 15%的时间会干扰呼吸输出。看守者的动作被确定具有98%的敏感性和特异性。传感器输出与车身覆盖物或位置无关。这个单一的非接触式传感器可以独立地量化这三种运动。 :将传感器用作机械呼吸机的同步触发器是可行的,以同步整体呼吸,量化整体运动,确定睡眠状态,检测癫痫发作并记录婴儿看护活动的数量和影响。

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