The effect of a covert manipulation of ambient temperature on heat storage and voluntary exercise intensity

被引:12
作者
Hartley, Geoffrey L. [1 ]
Flouris, Andreas D. [2 ]
Plyley, Michael J. [1 ]
Cheung, Stephen S. [1 ]
机构
[1] Brock Univ, Dept Kinesiol, Fac Appl Hlth Sci, Environm Ergon Lab, St Catharines, ON L2S 3A1, Canada
[2] Ctr Res & Technol Thessaly, Inst Human Performance & Rehabil, FAME Lab, Karies 42100, Trikala, Greece
关键词
Exercise control; Heat stress; Power output; Thermal behavior; ARIMA; PREDICTING BODY DENSITY; ANTICIPATORY REDUCTION; GENERALIZED EQUATIONS; CORE TEMPERATURE; PERFORMANCE; HOT; HYPERTHERMIA; THERMOMETRY; FATIGUE; ACTIVATION;
D O I
10.1016/j.physbeh.2011.12.017
中图分类号
B84 [心理学];
学科分类号
04 ; 0402 ;
摘要
The modulation of sub-maximal voluntary exercise intensity during heat stress has been suggested as a behavioral response to maintain homeostasis; however, the relationship between thermophysiological cues and the associated response remains unclear. Awareness of an environmental manipulation may influence anticipatory planning before the start of exercise, making it difficult to isolate the dynamic integration of thermophysiological afferents during exercise itself. The purpose of the present study was to examine the direct real-time relationship between thermophysiological afferents and the behavioral response of voluntary exercise intensity. Participants were tasked with cycling at a constant rating of perceived exertion while ambient temperature (T-a)was covertly changed from 20 degrees C to 35 degrees C and then back to 20 degrees C at 20-minute intervals. Overall, power output (PO) and heat storage, quantified using repeated measures ANOVA, changed significantly over 20-minute intervals (135 +/- 39W. 133 +/- 46W, 120 +/- 45W; 52.35 +/- 36.15W.m(-2), 66.34 +/- 22.02 W.m(-2), 66.53 +/- 56.01 W.m(-2)). The synchronicity of PO fluctuations with changes in thermophysiological status was quantified using Auto-Regressive Integrated Moving Average (ARIMA) time series analysis. Fluctuations in PO were not synchronized in real time with changes in T-a; heat storage; rectal, skin, or mean body temperature; or sweat rate (stationary-r(2) <= 0.10 and Ljung-Box statistic > 0.05 for all variables). We conclude that, while the thermal environment affects physiological responses and voluntary power output while cycling at a constant perceived effort, the behavioral response of voluntary exercise intensity did not depend on a direct response to real-time integration of thermal afferent inputs. (C) 2012 Elsevier Inc. All rights reserved.
引用
收藏
页码:1194 / 1201
页数:8
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