Authors
Se-Hee Park, Hwan Kim, Min-Goo Lee
Published in
Experimental physiology. Sep 11, 2026. Epub Sep 11, 2026.
Abstract
Cerebral palsy (CP) is associated with altered exercise physiology, but it remains unclear how ventilatory and cardiopulmonary responses are expressed under high physiological demand in individuals with CP. Six athletes with CP (spastic CP: n = 3, all GMFCS III, all male, mean age 24 years; ataxic CP: n = 3, GMFCS I/I/III, two female, mean age 28 years) and three non-disabled controls (CON: two female, mean age 28 years) performed a heart rate-matched incremental rowing protocol. Oxygen uptake, minute ventilation ( ), tidal volume (VT), respiratory frequency and O2 pulse were described across sitting rest and target heart rate stages of 120, 140, 160 and 180 bpm. Descriptive analyses with effect sizes were performed. Peak , recorded at the 180-bpm stage, appeared lower in CP subtypes than in CON (spastic CP: 33.9, 44.8, 31.7; ataxic CP: 35.3, 32.3, 28.3; CON: 49.3, 39.8, 48.5 mL kg- 1 min- 1). With increasing exercise intensity, O2 pulse tended to increase progressively in CON and ataxic CP; in spastic CP, the increase appeared more attenuated. VT appeared lower in CP than CON across all stages. At the 180-bpm stage, spastic CP showed a narrow inter-individual range (71.4-88.3 L min- 1) relative to CON (90.3-138.3 L min- 1); ataxic CP showed wide variability (48.3-112.9 L min- 1). Intensity-dependent changes in O2 pulse and ventilatory patterning appeared to differ between CP subtypes and CON, suggesting these variables may reflect subtype-specific exercise physiology in CP.
PMID:
42726940
Bibliographic data and abstract were imported from PubMed on 12 Sep 2026.
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