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使用接触式测温法测量皮肤温度:设置变量及其对测量值影响的系统评价

Skin Temperature Measurement Using Contact Thermometry: A Systematic Review of Setup Variables and Their Effects on Measured Values.

作者信息

MacRae Braid A, Annaheim Simon, Spengler Christina M, Rossi René M

机构信息

Empa, Swiss Federal Laboratories for Materials Science and Technology, Laboratory for Biomimetic Membranes and Textiles, St. Gallen, Switzerland.

Exercise Physiology Lab, Institute of Human Movement Sciences and Sport, Department of Health Sciences and Technology, ETH Zurich, Zurich, Switzerland.

出版信息

Front Physiol. 2018 Jan 30;9:29. doi: 10.3389/fphys.2018.00029. eCollection 2018.

Abstract

Skin temperature () is commonly measured using sensors affixed directly to the skin surface, although the influence of setup variables on the measured outcome requires clarification. The two distinct objectives of this systematic review were (1) to examine measurements from contact sensors considering equilibrium temperature and temperature disturbance, sensor attachments, pressure, environmental temperature, and sensor type, and (2) to characterise the contact sensors used, conditions of use, and subsequent reporting in studies investigating sports, exercise, and other physical activity. For the measurement comparison objective, Ovid Medline and Scopus were used (1960 to July 2016) and studies comparing contact sensor measurements or using appropriate physical models were included. For the survey of use, Ovid Medline was used (2011 to July 2016) and studies using contact temperature sensors for the measurement of human during sport, exercise, and other physical activity were included. For measurement comparisons, assessments of risk of bias were made according to an adapted version of the Cochrane Collaboration's risk of bias tool. Comparisons of temperature measurements were expressed, where possible, as mean difference and 95% limits of agreement (LoA). Meta-analyses were not performed due to the lack of a common reference condition. For the survey of use, extracted information was summarised in text and tabular form. For measurement comparisons, 21 studies were included. Results from these studies indicated minor (<0.5°C) to practically meaningful (>0.5°C) measurement bias within the subgroups of attachment type, applied pressure, environmental conditions, and sensor type. The 95% LoA were often within 1.0°C for studies and 0.5°C for physical models. For the survey of use, 172 studies were included. Details about sensor setup were often poorly reported and, from those reporting setup information, it was evident that setups widely varied in terms of type of sensors, attachments, and locations used. Setup variables and conditions of use can influence the measured temperature from contact sensors and thus key setup variables need to be appropriately considered and consistently reported.

摘要

皮肤温度()通常使用直接贴附在皮肤表面的传感器进行测量,不过设置变量对测量结果的影响仍需阐明。本系统评价的两个不同目标是:(1)考虑平衡温度和温度扰动、传感器附着方式、压力、环境温度及传感器类型,检查来自接触式传感器的测量结果;(2)描述在研究运动、锻炼及其他体力活动时所使用的接触式传感器、使用条件及后续报告情况。对于测量比较目标,使用了Ovid Medline和Scopus数据库(1960年至2016年7月),纳入了比较接触式传感器测量结果或使用适当物理模型的研究。对于使用情况调查,使用了Ovid Medline数据库(2011年至2016年7月),纳入了在运动、锻炼及其他体力活动期间使用接触式温度传感器测量人体皮肤温度的研究。对于测量比较,根据Cochrane协作网偏倚风险工具的改编版本进行偏倚风险评估。温度测量比较在可能的情况下以平均差和95%一致性界限(LoA)表示。由于缺乏共同的参考条件,未进行荟萃分析。对于使用情况调查,提取的信息以文本和表格形式进行总结。对于测量比较,纳入了21项研究。这些研究的结果表明,在附着类型、施加压力、环境条件和传感器类型的亚组内,测量偏差较小(<0.5°C)至具有实际意义(>0.5°C)。对于人体研究,95%LoA通常在1.0°C以内,对于物理模型则在0.5°C以内。对于使用情况调查,纳入了172项研究。关于皮肤温度传感器设置的细节通常报告不佳,从那些报告设置信息的研究来看,很明显在传感器类型、附着方式和使用位置方面设置差异很大。设置变量和使用条件会影响接触式传感器测量的温度,因此关键的设置变量需要得到适当考虑并一致报告。

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