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Application of infrared thermography to the study of behavioural fever in the desert locust

机译:红外热成像技术在沙漠蝗行为热研究中的应用

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Infrared (IR) thermography is used increasingly to estimate body temperature in small ectotherms such as insects. We used the thermal behaviour of an agricultural pest, the desert locust, Schistocerca gregaria, as a case study to demonstrate the application of this method to thermal biology. During microbial infection, the desert locust uses environmentally derived heat to elevate its body temperature. This 'behavioural fever' delays onset of disease caused by a fungal biopesticide. Understanding the thermal biology of S. gregaria is therefore a prerequisite for the development of a more effective mycoinsecticide. To accurately use IR thermography as a method of temperature measurement, IR data must first be calibrated with body temperature. Here, we identify two major factors which affect the IR data output and hence need to be incorporated into a camera calibration: (1) emissivity, predominantly determined by colour, and (2) the internal temperature of the camera. We demonstrate the limitations of thermocouple-based methods of temperature measurement in comparison to IR thermography. The detail provided by the large data sets revealed for the first time an early onset of fever in S. gregaria during infection with Metarhizium acridum viz. 20-25 h post-inoculation in comparison to the 48 h demonstrated previously
机译:红外(IR)热成像技术越来越多地用于估计昆虫等小型等温线中的体温。我们以一种农业害虫,沙漠蝗,日本血吸虫的热行为为例,以证明该方法在热生物学中的应用。在微生物感染期间,沙漠蝗虫利用环境产生的热量来升高其体温。这种“行为热”延迟了由真菌生物农药引起的疾病的发作。因此,了解格氏链球菌的热生物学是开发更有效的杀真菌剂的前提。为了准确地将红外热成像法用作温度测量方法,必须首先使用体温校准红外数据。在这里,我们确定了影响红外数据输出的两个主要因素,因此需要将其纳入相机校准中:(1)发射率(主要由颜色决定)和(2)相机的内部温度。与红外热成像相比,我们证明了基于热电偶的温度测量方法的局限性。大型数据集提供的详细信息首次揭示了在感染性变形杆菌(Metrahizium acridum viz)的过程中,S。gregaria发烧较早。接种后20-25小时与之前证明的48小时相比

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