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首页> 外文期刊>Journal of Thermal Biology >Microchip transponder thermometry for monitoring core body temperature of antelope during capture
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Microchip transponder thermometry for monitoring core body temperature of antelope during capture

机译:微芯片应答器测温法监测捕获过程中羚羊的核心体温

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Hyperthermia is described as the major cause of morbidity and mortality associated with capture, immobilization and restraint of wild animals. Therefore, accurately determining the core body temperature of wild animals during capture is crucial for monitoring hyperthermia and the efficacy of cooling procedures. We investigated if microchip thermometry can accurately reflect core body temperature changes during capture and cooling interventions in the springbok (Antidorcas marsupialis), a medium-sized antelope. Subcutaneous temperature measured with a temperature-sensitive microchip was a weak predictor of core body temperature measured by temperature-sensitive data loggers in the abdominal cavity (R-2=0.32, bias > 2 degrees C). Temperature-sensitive microchips in the gluteus muscle, however, provided an accurate estimate of core body temperature (R-2=0.76, bias=0.012 degrees C). Microchips inserted into muscle therefore provide a convenient and accurate method to measure body temperature continuously in captured antelope, allowing detection of hyperthermia and the efficacy of cooling procedures. (C) 2015 Elsevier Ltd. All rights reserved.
机译:热疗被描述为与野生动物捕获,固定和约束有关的发病率和死亡率的主要原因。因此,在捕获过程中准确确定野生动物的核心体温对于监测体温过高和冷却程序的有效性至关重要。我们研究了微芯片测温法是否能准确反映中型羚羊跳羚(Antidorcas marsupialis)在捕获和冷却干预期间的核心体温变化。用温度敏感的微芯片测量的皮下温度是腹腔内温度敏感的数据记录仪测量的核心体温的较弱预测指标(R-2 = 0.32,偏差> 2摄氏度)。然而,臀肌中对温度敏感的微芯片提供了核心体温的准确估计值(R-2 = 0.76,偏差= 0.012摄氏度)。因此,插入肌肉中的微芯片提供了一种方便,准确的方法来连续测量捕获的羚羊的体温,从而可以检测体温过高和冷却程序的功效。 (C)2015 Elsevier Ltd.保留所有权利。

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