CORE可穿戴传感器与BodyCap温度药丸在精英女子曲棍球热训练营期间评估核心体温的同时有效性。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Paul S R Goods, Peta Maloney, Joanna Miller, Denise Jennings, Jack Fahey-Gilmour, Peter Peeling, Brook Galna
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引用次数: 3

摘要

可穿戴温度传感器提供了克服当前基于实验室和现场的岩心温度评估方法相关的几个限制的潜力;然而,它们在核心温度升高(Tc)下提供准确数据的能力受到质疑。因此,本研究旨在确定可穿戴温度传感器(CORE)与参考遥测温度药丸(BodyCAP)在2020年奥运会前的团队运动热训练营中的并发有效性。澳大利亚国家队的19名女子曲棍球运动员(n = 19)在炎热的条件下完成了4次训练,他们的体温由CORE和BodyCAP监测。参考摄入BodyCAP药丸确定可穿戴CORE装置的并发有效性。Lin的一致性相关系数表明,在所有的会话中,设备之间的一致性“很差”。平均偏倚表明,CORE在所有疗程中都低估了Tc(-0.06°C至-0.34°C),平均95%置信区间较宽(±0.35°C至±0.56°C)。局部估计的散点图平滑回归线说明了误差的非线性,随着Tc的增加,CORE设备对Tc的低估程度更高。在每次会话中,41-60%的所有数据样本的两个设备不一致超过±0.3°C。我们的研究结果不支持使用CORE设备作为遥测体温丸的有效替代Tc评估,特别是在高温条件下的运动中,Tc可能会升高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Concurrent validity of the CORE wearable sensor with BodyCap temperature pill to assess core body temperature during an elite women's field hockey heat training camp.

Wearable temperature sensors offer the potential to overcome several limitations associated with current laboratory- and field-based methods for core temperature assessment; however, their ability to provide accurate data at elevated core temperatures (Tc) has been questioned. Therefore, this investigation aimed to determine the concurrent validity of a wearable temperature sensor (CORE) compared to a reference telemetric temperature pill (BodyCAP) during a team-sport heat training camp prior to the 2020 Olympic Games. Female field hockey players (n = 19) in the Australian national squad completed 4 sessions in hot conditions where their temperature was monitored via CORE and BodyCAP. Concurrent validity of the wearable CORE device was determined with reference to the ingested BodyCAP pill. Lin's Concordance Correlation Coefficients determined there was "poor" agreement between devices during all sessions. Mean bias demonstrated that CORE underestimated Tc in all sessions (-0.06°C to -0.34°C), with wide mean 95% confidence intervals (±0.35°C to ±0.56°C). Locally estimated scatterplot smoothing regression lines illustrated a non-linearity of error, with greater underestimation of Tc by the CORE device, as Tc increased. The two devices disagreed more than ±0.3°C for 41-60% of all data samples in each session. Our findings do not support the use of the CORE device as a valid alternative to telemetric temperature pills for Tc assessment, particularly during exercise in hot conditions where elevated Tc are expected.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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