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Response of thermocouples interfaced to electrothermometers when immersed in 5 water bath temperatures.

机译:当浸入5个水浴温度时,热电偶与电温度计的响应。

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CONTEXT: Thermocouples and electrothermometers are used in therapeutic modality research. Until recently, researchers assumed that these instruments were valid and reliable. OBJECTIVE: To examine 3 different thermocouple types in 5 degrees C, 15 degrees C, 18.4 degrees C, 25 degrees C, and 35 degrees C water baths. DESIGN: Randomized controlled trial. SETTING: Therapeutic modality laboratory. Intervention(s): Eighteen thermocouple leads were inserted through the wall of a foamed polystyrene cooler. The cooler was filled with water. Six thermocouples (2 of each model) were plugged into the 6 channels of the Datalogger and 6 randomly selected channels in the 2 Iso-Thermexes. A mercury thermometer was immersed into the water and was read every 10 seconds for 4 minutes during each of 6 trials. The entire process was repeated for each of 5 water bath temperatures (5 degrees C, 15 degrees C, 18.4 degrees C, 25 degrees C, 35 degrees C). MAIN OUTCOME MEASURE(S): Temperature and absolute temperature differences among 3 thermocouple types (IT-21, IT-18, PT-6) and 3 electrothermometers (Datalogger, Iso-Thermex calibrated from -50 degrees C to 50 degrees C, Iso-Thermex calibrated from -20 degrees C to 80 degrees C). RESULTS: Validity and reliability were dependent on thermocouple type, electrothermometer, and water bath temperature (P < .001; modified Levene P < .05). Statistically, the IT-18 and PT-6 thermocouples were not reliable in each electrothermometer; however, these differences were not practically different from each other. The PT-6 thermocouples were more valid than the IT-18s, and both thermocouple types were more valid than the IT-21s, regardless of water bath temperature (P < .001). CONCLUSIONS: The validity and reliability of thermocouples interfaced to an electrothermometer under experimental conditions should be tested before data collection. We also recommend that investigators report the validity, the reliability, and the calculated uncertainty (validity + reliability) of their temperature measurements for therapeutic modalities research. With this information, investigators and clinicians will be better able to interpret and compare results and conclusions.
机译:背景:热电偶和电热计用于治疗方式研究。直到最近,研究人员还认为这些仪器是有效且可靠的。目的:在5摄氏度,15摄氏度,18.4摄氏度,25摄氏度和35摄氏度的水浴中检查3种不同的热电偶类型。设计:随机对照试验。地点:治疗方法实验室。干预措施:将18条热电偶引线插入泡沫聚苯乙烯冷却器的壁中。冷却器充满水。将六个热电偶(每个模型2个)插入Datalogger的6个通道中,并在2个Iso-Thermexes中随机选择6个通道。将水银温度计浸入水中,并在6次试验中每10秒读取一次,持续4分钟。对5个水浴温度(5摄氏度,15摄氏度,18.4摄氏度,25摄氏度,35摄氏度)中的每一个重复整个过程。主要观察指标:3种热电偶类型(IT-21,IT-18,PT-6)和3种电温度计(数据记录仪,Iso-Thermex的校准温度范围为-50到50摄氏度,Iso为3)之间的温度和绝对温度差-Thermex在-20摄氏度至80摄氏度之间校准)。结果:有效性和可靠性取决于热电偶类型,电热温度计和水浴温度(P <.001;修正的Levene P <.05)。从统计上讲,IT-18和PT-6热电偶在每个电热仪中都不可靠。但是,这些差异实际上并没有什么不同。 PT-6热电偶比IT-18s更有效,并且两种热电偶类型都比IT-21s更有效,而与水浴温度无关(P <.001)。结论:在实验条件下,连接电热计的热电偶的有效性和可靠性应在数据收集之前进行测试。我们还建议研究者报告其温度测量值的有效性,可靠性以及计算出的不确定度(有效性+可靠性),以用于治疗方式研究。有了这些信息,研究人员和临床医生将能够更好地解释和比较结果和结论。

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