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3M™ Bair Hugger™ 温度监测系统零热流温度测量的准确性和精密度:系统评价和荟萃分析。

Accuracy and precision of zero-heat-flux temperature measurements with the 3M™ Bair Hugger™ Temperature Monitoring System: a systematic review and meta-analysis.

机构信息

Peter Munk Cardiac Centre, University Health Network, 585 University Ave, Toronto, ON, M5G 2N2, Canada.

Lawrence S. Bloomberg Faculty of Nursing, University of Toronto, Toronto, Canada.

出版信息

J Clin Monit Comput. 2021 Feb;35(1):39-49. doi: 10.1007/s10877-020-00543-6. Epub 2020 Jun 2.

Abstract

Zero-heat-flux thermometers provide clinicians with the ability to continuously and non-invasively monitor body temperature. These devices are increasingly being used to substitute for more invasive core temperature measurements during surgery and in critical care. The aim of this review was to determine the accuracy and precision of zero-heat-flux temperature measurements from the 3M™ Bair Hugger™ Temperature Monitoring System. Medline and EMBASE were searched for studies that reported on a measurement of core or peripheral temperature that coincided with a measurement from the zero-heat-flux device. Study selection and quality assessment was performed independently using the Revised Quality Assessment of Diagnostic Accuracy Studies tool (QUADAS-2). The Grading of Recommendations, Assessment, Development and Evaluations (GRADE) approach was used to summarize the strength of the evidence. Pooled estimates of the mean bias and limits of agreement with outer 95% confidence intervals (population limits of agreement) were calculated. Sixteen studies were included. The primary meta-analysis of zero-heat-flux versus core temperature consisted of 22 comparisons from 16 individual studies. Data from 952 participants with 314,137 paired measurements were included. The pooled estimate for the mean bias was 0.03 °C. Population limits of agreement, which take into consideration the between-study heterogeneity and sampling error, were wide, spanning from - 0.93 to 0.98 °C. The GRADE evidence quality rating was downgraded to moderate due to concerns about study limitations. Population limits of agreement for the sensitivity analysis restricted to studies rated as having low risk of bias across all the domains of the QUADAS-2 were similar to the primary analysis. The range of uncertainty in the accuracy of a thermometer should be taken into account when using this device to inform clinical decision-making. Clinicians should therefore consider the potential that a temperature measurement from a 3M™ Bair Hugger™ Temperature Monitoring System could be as much as 1 °C higher or lower than core temperature. Use of this device may not be appropriate in situations where a difference in temperature of less than 1 °C is important to detect.

摘要

零热流温度计为临床医生提供了连续、非侵入性监测体温的能力。这些设备越来越多地被用于替代手术和重症监护期间更具侵入性的核心温度测量。本综述的目的是确定 3M™Bair Hugger™温度监测系统的零热流温度测量的准确性和精密度。在 Medline 和 EMBASE 上搜索了报告核心或外周温度测量与零热流设备测量相吻合的研究。使用修订后的诊断准确性研究质量评估工具(QUADAS-2)独立进行研究选择和质量评估。使用推荐评估、制定与评估分级(GRADE)方法总结证据的强度。计算了平均偏差的汇总估计值和外 95%置信区间(人群界限)的一致性界限。纳入了 16 项研究。零热流与核心温度的主要荟萃分析包括来自 16 项独立研究的 22 项比较。纳入了 952 名参与者、314,137 对配对测量数据。平均偏差的汇总估计值为 0.03°C。考虑到研究间异质性和抽样误差的人群界限很宽,范围从-0.93 到 0.98°C。由于对研究局限性的担忧,GRADE 证据质量等级被降级为中等。限制在所有 QUADAS-2 领域均为低偏倚风险的研究进行的敏感性分析的人群界限与主要分析相似。在使用该设备为临床决策提供信息时,应考虑温度计准确性的不确定性范围。因此,临床医生应考虑到 3M™Bair Hugger™温度监测系统的温度测量值可能比核心温度高或低 1°C。在需要检测不到 1°C 的温差的情况下,可能不适合使用该设备。

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