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NFC2BLE Communications' Bridge: From Flash to Continuous Monitoring of Biological Parameters

机译:NFC2BLE通信'桥:从闪光到持续监测生物参数

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The devices for monitoring biological variables have become a hot topic in the last years. An important aspect in the design of these wearable devices is the continuous communication, as well as the associated energy consumption. As a result, the concept of flash monitoring has been recently coined. This implies that the reading of the variables is not made in a continuous manner, but the values are stored on the sensor electronics for a while and then retrieved altogether to the reader. This concept reduces the energy consumption since there is no continuous communication, and this feature is, therefore, beneficial in certain contexts. However, the communication is sometimes required to be continuous, so that solutions based on continuous communication or alarms can be implemented. This work shows a technological development that allows converting a biological variable reading system based on flash monitoring into a continuous one. The details of the electronic development of the components are shown, and the software structure integrated in the microcontroller is discussed. The system devoted to the management and remote acquisition of the data is shown as well. As an example, the performance of the system is shown in two different contexts: with a flash biopatch for the body temperature monitoring designed in the laboratory and with a commercially available flash interstitial glucose monitoring system.
机译:用于监测生物变量的设备已成为过去几年的热门话题。这些可穿戴设备的设计中的一个重要方面是连续通信,以及相关的能量消耗。结果,最近创造了闪光灯监测的概念。这意味着不以连续方式进行变量的读取,但是值存储在传感器电子设备上一段时间,然后将它们完全检索到读取器。这一概念降低了能量消耗,因为没有连续通信,因此,这种特征在某些情况下有益。然而,有时需要连续的通信,因此可以实现基于连续通信或警报的解决方案。这项工作显示了一种技术开发,允许基于闪光灯监测转换生物可变读取系统进入连续的。显示了组件的电子开发的细节,并讨论了集成在微控制器中的软件结构。还显示了致力于管理和远程获取数据的系统。作为示例,系统的性能如两种不同的上下文所示:用闪光生物阀用于在实验室中设计的体温监测和市售的闪光间质葡萄糖监测系统。

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