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Remote vital parameter monitoring in neonatology - robust, unobtrusive heart rate detection in a realistic clinical scenario

机译:新生儿科中的远程生命参数监控-在实际临床场景中进行稳定,不显眼的心率检测

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Vital parameter monitoring of term and preterm infants during incubator care with self-adhesive electrodes or sensors directly positioned on the skin [e.g. photoplethysmography ( PPG) for oxygen saturation or electrocardiography (ECG)] is an essential part of daily routine care in neonatal intensive care units. For various reasons, this kind of monitoring contains a lot of stress for the infants. Therefore, there is a need to measure vital parameters (for instance respiration, temperature, pulse, oxygen saturation) without mechanical or conductive contact. As a non-contact method of monitoring, we present an adapted version of camera-based photoplethysmography imaging (PPGI) according to neonatal requirements. Similar to classic PPG, the PPGI camera detects small temporal changes in the term and preterm infant's skin brightness due to the cardiovascular rhythm of dermal blood perfusion. We involved 10 preterm infants in a feasibility study [five males and five females; mean gestational age: 26 weeks (24-28 weeks); mean biological age: 35 days (8-41 days); mean weight at the time of investigation: 960 g (670-1290 g)]. The PPGI camera was placed directly above the incubators with the infant inside illuminated by an infrared light emitting diode (LED) array (850 nm). From each preterm infant, 5-min video sequences were recorded and analyzed post hoc. As the measurement scenario was kept as realistic as possible, the infants were not constrained in their movements in front of the camera. Movement intensities were assigned into five classes (1: no visible motion to 5: heavy struggling). PPGI was found to be significantly sensitive to movement artifacts. However, for movement classes 1-4, changes in blood perfusion according to the heart rate (HR) were recovered successfully (Pearson correlation: r = 0.9759; r = 0.765 if class 5 is included). The study was approved by the Ethics Committee of the Universal Hospital of the RWTH Aachen University, Aachen, Germany (EK 254/13).
机译:使用自动粘贴的电极或直接放置在皮肤上的传感器,在保育箱护理期间对足月和早产婴儿的重要参数进行监控[例如,氧饱和度的光电容积描记术(PPG)或心电图检查(ECG)]是新生儿重症监护室日常日常护理的重要组成部分。由于各种原因,这种监视对婴儿造成很大的压力。因此,需要在没有机械或导电接触的情况下测量重要参数(例如呼吸,温度,脉搏,氧饱和度)。作为一种非接触式监测方法,我们根据新生儿的需求提出了一种基于相机的光电容积描记术成像(PPGI)的改进版本。与经典PPG相似,PPGI摄像机可以检测到由于皮肤血液灌注的心血管节律而导致的足月和早产儿皮肤亮度的短暂时间变化。我们将10名早产儿纳入可行性研究[5例男性和5例女性;平均胎龄:26周(24-28周);平均生物年龄:35天(8-41天);研究时的平均体重:960克(670-1290克)]。将PPGI摄像机直接放在培养箱上方,婴儿的内部被红外发光二极管(LED)阵列(850 nm)照明。从每个早产儿中记录5分钟的视频序列,并事后进行分析。由于测量场景尽可能地切合实际,因此婴儿在镜头前的移动不受限制。运动强度分为五类(1:无可见运动; 5:剧烈挣扎)。发现PPGI对运动伪影非常敏感。但是,对于1-4级运动,可以成功恢复根据心率(HR)进行的血液灌注变化(Pearson相关性:r = 0.9759;如果包括5类,则r = 0.765)。该研究得到了亚琛工业大学亚琛工业大学环球医院伦理委员会的批准(EK 254/13)。

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