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Review of Biomedical Applications of Contactless Imaging of Neonates Using Infrared Thermography and Beyond

机译:红外热像仪及其他技术对新生儿非接触式成像的生物医学应用综述

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The sick preterm infant monitoring is an intriguing job that medical staff in Neonatal Intensive Care Units (NICU) must deal with on a daily basis. As a standards monitoring procedure, preterm infants are monitored via sensors and electrodes that are firmly attached to their fragile and delicate skin and connected to processing monitors. However, an alternative exists in contactless imaging to record such physiological signals (we call it as Physio-Markers), detecting superficial changes and internal structures activities which can be used independently of, or aligned with, conventional monitors. Countless advantages can be gained from unobtrusive monitoring not limited to: (1) quick data generation; (2) decreasing physical and direct contact with skin, which reduces skin breakdown and minimizes risk of infection; and (3) reduction of electrodes and probes connected to clinical monitors and attached to the skin, which allows greater body surface-area for better care. This review is an attempt to build a solid ground for and to provide a clear perspective of the potential clinical applications of technologies inside NICUs that use contactless imaging modalities such as Visible Light Imaging (VLI), Near Infrared Spectroscopy (NIRS), and Infrared Thermography (IRT).
机译:患病的早产儿监护是一项有趣的工作,新生儿重症监护病房(NICU)的医务人员必须每天处理。作为标准的监测程序,早产儿通过传感器和电极进行监测,传感器和电极牢固地附着在其脆弱而脆弱的皮肤上,并与处理监视器相连。但是,在非接触式成像中存在一种替代方案,可以记录此类生理信号(我们称为Physio-Markers),检测表面变化和内部结构活动,这些活动可以独立于常规监视器使用或与常规监视器配合使用。不受干扰的监视可以带来无数的优势,不仅限于:(1)快速生成数据; (2)减少与皮肤的物理和直接接触,从而减少皮肤破裂并使感染风险降到最低; (3)减少连接到临床监护仪并附着在皮肤上的电极和探针,从而允许更大的身体表面积,以提供更好的护理。这篇综述旨在为使用非接触式成像方式(例如可见光成像(VLI),近红外光谱(NIRS)和红外热成像)的NICU内部技术奠定坚实基础并提供清晰的前景(IRT)。

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