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Physiological demands of the firefighter Candidate Physical Ability Test.

机译:消防员候选人身体能力测验的生理要求。

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PURPOSE: The Candidate Physical Ability Test (CPAT) is used by fire departments across North America to screen for minimal physical capabilities in potential candidates, but its physiological demands are unknown. METHODS AND RESULTS: We examined oxygen uptake and carbon dioxide output (V x O2, V x CO2) and heart rate (HR) responses with the portable system in 57 subjects (23 females) who were familiarized before completing the CPAT in times similar to those of actual candidates. Two men and nine women failed to complete the circuit because of fatigue. Thirty-two men (91%) and four women (15%) completed the circuit under the criterion time (10 min 20 s) with mean completion times for men (8 min 32 s +/- 51 s) and women (11 min 16 s +/- 1 min 28 s, P < 0.05). For all finishers, V x O2 during the test was 38.5 and 36.6 mL x kg(-1) x min(-1), corresponding to 73% and 71% of V x O 2max for men and women, and HR was 90% and 91% of maximum (P > 0.05). RER averaged 1.02 for men and 0.97 for women suggesting elevated anaerobic metabolism. Women had a drop in RER after the second event, and they were significantly slower at each event after the step mill than the men. Prediction of circuit completion time by backward stepwise regression yielded models with absolute V x O 2max alone or relative V x O 2max plus body mass and handgrip strength accounting for more than 67% of the variance but with large errors of estimation exceeding 75 s. CONCLUSION: The CPAT challenged both the aerobic and anaerobic energy supply systems, and the average V x O2 and HR were similar to reported values during firefighting simulations with incumbent firefighters.
机译:目的:北美消防部门使用候选人身体能力测试(CPAT)来筛选潜在候选人的最低身体能力,但其生理需求尚不明确。方法和结果:我们对57名受试者(23名女性)进行了便携式系统检查,研究了他们在完成CPAT之前的熟悉时间,其氧气吸收和二氧化碳输出量(V x O2,V x CO2)和心率(HR)反应与实际候选人。由于疲劳,两名男子和九名女子未能完成巡回赛。三十二名男性(91%)和四名女性(15%)在标准时间(10分钟20秒)下完成了巡回赛,男性(8分钟32秒+/- 51秒)和女性(11分钟)的平均完成时间16秒+/- 1分钟28秒,P <0.05)。对于所有整理者,测试期间的V x O2为38.5和36.6 mL x kg(-1)x min(-1),分别对应于男性和女性的V x O 2max的73%和71%,HR为90%和最大值的91%(P> 0.05)。男性的RER平均为1.02,女性为0.97,表明厌氧代谢升高。在第二次比赛之后,女性的RER下降,并且在步伐运动之后的每次事件中,女性的RER明显比男性慢。通过向后逐步回归来预测电路完成时间,得出的模型仅具有绝对V x O 2max或相对V x O 2max加上体重和握力,占据了67%以上的方差,但估计误差超过75 s。结论:CPAT挑战了有氧和无氧能源供应系统,在现役消防员进行消防模拟时,平均V x O2和HR与报告值相似。

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