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Sensory baby vest for the monitoring of infants

机译:婴幼儿感官式婴儿背心

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Continuous monitoring of physiological parameters is very often necessary for the evaluation of health conditions, diagnostic reasons and the detection of life or health threatening events. For infants, especially, who cannot provide any feedback about discomfort or health complaints it is an important issue to collect objective data under everyday conditions. The demand of physicians for the development of monitoring and diagnostic systems which are easier to handle and less obtrusive than the commonly used medical systems was the motivation for the presented project. Another motivation was the concern frequently expressed by parents about the danger of apparently life threatening events (ALTE) or even the problems of sudden infants death syndrome (SIDS). The developed sensory baby vest includes fully integrated sensors for the parameters respiration, heart rate, temperature and humidity, to detect excessive sweating, for the continuous monitoring of infants under clinical and home conditions. It will allow the early detection of potential life threatening events calling for rescue as well as the recognition of the development or progression of diseases at an early stage. Health protection or even life-saving thus will be enabled in time. A variety of principles for the measurement of the parameters has been assessed for the integration into garments. Prototypes have been manufactured incorporating the chosen sensing principles with textile and textile-compatible technologies. Currently, the prototypes are clinically tested for durability, handling and signal quality.
机译:对于评估健康状况,诊断原因以及检测生命或威胁健康的事件,经常需要连续监测生理参数。特别是对于无法提供有关不适或健康状况的任何反馈的婴儿来说,在日常情况下收集客观数据是一个重要的问题。医师对监视和诊断系统的开发的需求是本项目的动机,该监视和诊断系统比通常使用的医疗系统更易于操作且不易受干扰。另一个动机是父母经常对明显威胁生命的事件(ALTE)的危险,甚至婴儿猝死综合症(SIDS)的问题表示担忧。研发的感官婴儿背心包括完全集成的传感器,用于呼吸,心率,温度和湿度的参数,以检测出汗过多,以便在临床和家庭条件下对婴儿进行连续监测。它将可以及早发现潜在的威胁生命的事件,要求进行抢救,并在早期识别疾病的发展或进程。因此,将及时启用健康保护甚至挽救生命。已经评估了各种参数测量原理,以整合到服装中。原型已被制造出来,并结合了所选的传感原理以及纺织品和与纺织品兼容的技术。目前,这些原型已经过临床测试,包括耐用性,操控性和信号质量。

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