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Performance testing of an innovative telemetric temperature sensor in animals

机译:创新的遥测温度传感器在动物中的性能测试

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This study consists of a first assessment of a new technological solution (e-Celsius (TM) prototype) designed to perform intra peritoneal (IF) temperature measurements in animals. The tested prototype temperature sensor is composed of a miniaturized electronic sensor (capsule), which uses wireless technology to transmit temperature data to a dedicated monitor. The performance assessment was based on the comparison with commercially available analog tools (VitalSense, Jonah (TM) ingestible core temperature capsules) considered as gold standards. The variability (mean absolute deviation) of the calculated difference score around its mean value was taken as a reliability index. Thus, 6 pairs of capsules (1 Jonah (TM) + 1 e-Celslus (TM) prototype temperature sensor) were constituted. All the electronic capsules were first tested in a water bath heated to 37 degrees C and then implanted intra-abdominally in 6 male Sprague Dawley rats. The capsules' performances were assessed while rats were in free living conditions (24 h alone in cage) and then again during the cooling process (anesthesia + ice). In a second step, a test was designed to assess the maximum distance of communication between sensors and the monitor. The mean absolute deviation of the difference scores was greater in the 24 h free living conditions (+/- 0.17 degrees C) compared to the water bath conditions (+/- 0.04 degrees C). No difference was observed when compared to the cooling stage (+/- 0.1 degrees C). Considering that 50% of the data collected as a satisfactory performance criterion, the Jonah (TM) device could not be used at a distance exceeding 0.5 m while the maximum distance recorded for the e-Celsius (TM) was 3 m. The minimum life span for the tested e-Celsius (TM) and Jonah (TM) capsules was 14 days. The development of a precise calibration method is needed to finalize its validation
机译:这项研究包括对新技术解决方案(e-Celsius(TM)原型)的首次评估,该解决方案旨在对动物进行腹膜内(IF)温度测量。经过测试的原型温度传感器由小型电子传感器(胶囊)组成,该传感器使用无线技术将温度数据传输到专用监视器。性能评估是基于与被视为黄金标准的市售模拟工具(VitalSense,Jonah(TM)可摄入核心温度胶囊)的比较。将计算出的差异评分的平均值附近的变异性(平均绝对偏差)作为可靠性指标。因此,构成了6对胶囊(1个Jonah(TM)+ 1个e-Celslus(TM)原型温度传感器)。首先在加热至37摄氏度的水浴中测试所有电子胶囊,然后将其腹腔植入6只雄性Sprague Dawley大鼠中。在大鼠处于自由生活条件下(单独在笼中24小时),然后在冷却过程(麻醉+冰)中再次评估胶囊的性能。第二步,设计了一个测试,以评估传感器和显示器之间的最大通信距离。相较于水浴条件(+/- 0.04摄氏度),在24小时自由生活条件下(+/- 0.17摄氏度),差异评分的平均绝对偏差更大。与冷却阶段(+/- 0.1摄氏度)相比,没有发现差异。考虑到收集的数据的50%作为令人满意的性能标准,Jonah(TM)设备不能在超过0.5 m的距离上使用,而e-Celsius(TM)记录的最大距离是3 m。经测试的e-Celsius(TM)和Jonah(TM)胶囊的最小寿命为14天。需要开发精确的校准方法以完成其验证

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