Key result
Arm crank exercise elicits greater heart rate, blood lactate, and ventilatory responses than cycling.
Why the study?
Does prolonged upper-body exercise elicit different physiological responses compared to lower-body exercise in males?
Does prolonged upper-body exercise elicit different physiological responses compared to lower-body exercise in males?
p-value: p=<0.05
Prolonged upper-body exercise elicits lower heart rates than lower-body exercise at the same relative intensity, suggesting heart rate-based exercise prescriptions may need modification for upper-body training.
Arm crank at matched absolute VO2 heightens cardiorespiratory and metabolic demand versus cycling; leaves open modality-specific prescription adjustments.
To date, investigators have not examined physiological responses to prolonged upper-body exercise. Knowledge of the feasibility of performing this type of exercise and the elicited responses could have application in designing continuous training programs for upper-body muscle groups. Nine males, with a peak oxygen uptake (means +/- SD) of 49 +/- 7 for cycle (CY) and 35 +/- 6 ml X min-1 X kg-1 for arm crank (AC) exercise, completed four 60-min exercise tests. The subjects performed AC and CY exercise at the same absolute (ABS) oxygen uptake (1.6 1 X min-1) and at the same relative (REL) percent of ergometer-specific peak oxygen uptake (60%). During the ABS tests, AC exercise elicited significantly (P less than 0.05) greater heart rate (HR), ventilatory equivalent of oxygen (VE X VO2(-1), blood lactate (La), and percent decrease in plasma volume (PV) than CY exercise. During the REL tests, HR was lower and VE X VO2(-1) was higher for AC than CY exercise; there were no differences between AC and CY exercise in La or PV responses. These data demonstrate that upper-body exercise can be performed for 60 min at a relative intensity which might be sufficient to elicit a cardiovascular training effect. However, because heart rates are lower during upper-than lower-body exercise at the same relative intensity, exercise prescriptions based on heart rate alone may need to be modified for upper-body exercise.
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Pimental et al. (1983) studied this question. Arm crank (AC) exercise vs. Cycle (CY) exercise was evaluated on Heart rate, ventilatory equivalent of oxygen, blood lactate, and percent decrease in plasma volume (p=<0.05). Arm crank exercise at the same absolute oxygen uptake elicited significantly greater heart rate, ventilatory equivalent, blood lactate, and plasma volume decrease than cycle exercise (P<0.05).
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