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Non-invasive continuous respiratory monitoring using temperature-based sensors

机译:使用温度为基础传感器的非侵入性连续呼吸监测

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摘要

Respiratory rate (RR) is a key vital sign that has been traditionally employed in the clinical assessment of patients and in the prevention of respiratory compromise. Despite its relevance, current practice for monitoring RR in non-intubated patients strongly relies on visual counting, which delivers an intermittent and error-prone assessment of the respiratory status. Here, we present a novel non-invasive respiratory monitor that continuously measures the RR in human subjects. The respiratory activity of the user is inferred by sensing the thermal transfer between the breathing airflow and a temperature sensor placed between the nose and the mouth. The performance of the respiratory monitor is assessed through respiratory experiments performed on healthy subjects. Under spontaneous breathing, the mean RR difference between our respiratory monitor and visual counting was 0.4 breaths per minute (BPM), with a 95% confidence interval equal to [- 0.5, 1.3] BPM. The robustness of the respiratory sensor to the position is assessed by studying the signal-to-noise ratio in different locations on the upper lip, displaying a markedly better performance than traditional thermal sensors used for respiratory airflow measurements.
机译:呼吸率(RR)是一种关键的重要标志,传统上用于患者的临床评估和预防呼吸妥协。尽管有其相关性,但在非插管患者中监测RR的目前的实践强烈依赖于视觉计数,这提供了对呼吸状况的间歇性和易于忽视的评估。在这里,我们提出了一种新的非侵入性呼吸道监测,不断测量人类受试者的RR。通过感测呼吸气流和放置在鼻子和嘴之间的温度传感器之间的热传递来推断使用者的呼吸活动。通过对健康受试者进行的呼吸实验评估呼吸监测仪的性能。在自发的呼吸下,我们的呼吸监测和视觉计数之间的平均RR差异为每分钟0.4呼吸(BPM),95%置信区间等于[ - 0.5,1.3] BPM。通过研究上唇上的不同位置的信噪比来评估呼吸传感器到该位置的鲁棒性,比用于呼吸气流测量的传统热传感器明显更好的性能。

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