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Ratings of Perceived Exertion, Heart Rate, and Power Output in Predicting Maximal Oxygen Uptake During Submaximal Cycle Ergometry

Jack H. Wilmore, Fred B. Roby, Philip R. Stanforth, Michael J. Buono, Stefan H. Constable, Yuan Tsao, Brian J. Lowdon

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Abstract

In brief: Sixty-two subjects completed a four- stage submaximal cycle ergometer test to volitional fatigue. The purpose was to determine if estimates of V O2 max could be improved by using ratings of perceived exertion singly or in combination with easily obtainable physiological measures during submaximal cycle ergometry. While these procedures may not be acceptable for scientific purposes, clinicians could use them to estimate the aerobic power of their patients and athletes.

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What this paper is about

In brief: Sixty-two subjects completed a four- stage submaximal cycle ergometer test to volitional fatigue. The purpose was to determine if estimates of V O2 max could be improved by using ratings of perceived exertion singly or in combination with easily obtainable physiological measures during submaximal cycle ergometry. While these procedures may not be acceptable for scientific purposes, clinicians could use them to estimate the aerobic power of their patients and athletes.

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OpenAlex reports 18 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In brief: Sixty-two subjects completed a four- stage submaximal cycle ergometer test to volitional fatigue. The purpose was to determine if estimates of V O2 max could be improved by using ratings of perceived exertion singly or in combination with easily obtainable physiological measures during submaximal cycle ergometry. While these procedures may not be acceptable for scientific purposes, clinicians could use them to estimate the aerobic power of their patients and athletes.

Key concepts: Cycle ergometer, Athletes, Perceived exertion, Heart rate, Exertion, Physical therapy, VO2 max, Medicine

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Ratings of Perceived Exertion, Heart Rate, and Power Output in Predicting Maximal Oxygen Uptake During Submaximal Cycle Ergometry — Research Paper | ScholarLens