Library
PubMed
research article
Professional

Near infrared spectroscopy-derived muscle oxidative capacity correlates to oxidative metabolic predictors of performance in highly trained female middle-distance runners.

Source: PubMed, NCBI / U.S. National Library of Medicine

Physiological reportsSchoeberlein Mira I, Hunter Louis D, Richardson Emma W, et al.Published 8/1/2026Last synced 8/11/2026Status: syncedPMID: 42572413DOI: 10.14814/phy2.71047

Investigate the relationship between muscle oxidative capacity, indices of Ometabolism (maximal capacity and sustainable steady state), and severe domain performance in highly trained female middle-distance runners. Incremental treadmill test determined maximal oxygen uptake (V̇O) and lactate turn point (LTP). Critical speed (CS) was calculated from historical race and training data. Time-to-exhaustion (TTE) trials were run at a speed predicted to elicit exhaustion in 4 min. Muscle oxidative capacity (rectus femoris) was measured via muscle oxygen uptake (mV̇O) from near infrared spectroscopy (NIRS) deoxygenation slopes during intermittent arterial cuff occlusions (8 × 5 s ON/5 s OFF) following light exercise. Slopes were fit to a mono-exponential model to calculate recovery rate (k). Muscle oxidative capacity was highly correlated to V̇O(r = 0.71, p = 0.002), LTP (r = 0.67, p = 0.005), and estimated CS (r = 0.66, p = 0.005). However, muscle oxidative capacity was not correlated to TTE performance (r = 0.13, p = 0.622). NIRS-derived muscle oxidative capacity is strongly associated with maximal and sustainable oxidative metabolic rates in highly trained female runners but appears independent of the finite energy capacity required during a severe-domain performance.

Educational only
This information is for general education and is not medical advice. Always talk to a licensed U.S. clinician about your situation, medications, or treatment decisions.