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October 1, 2000Journal of Applied Physiology121 citations

Role of convective O2 delivery in determiningV˙o 2 on-kinetics in canine muscle contracting at peak V˙o 2

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BGBruno GrassiMHMichael C. HoganKKKevin M. Kelley

Structured PICO

Does fast O2 delivery improve VO2 on-kinetics in isolated canine gastrocnemius muscles contracting at peak VO2?

P
Population
Isolated canine gastrocnemius muscles in situ (n = 5)
I
Intervention
Pump-perfused muscle blood flow (Q) adjusted approximately 15-30 s before contractions at a constant level corresponding to the steady-state value during contractions in Control, with intra-arterial adenosine infusion (Fast O2 Delivery)
C
Comparator
Spontaneous adjustment of muscle blood flow (Q) (Control)
O
Outcome
VO2 on-kinetics (time to reach 63% of the VO2 difference between resting baseline and steady-state values during contractions)surrogate

In canine muscle contracting at peak VO2, convective O2 delivery contributes to determining VO2 on-kinetics, as faster O2 delivery significantly reduced the time to reach 63% of steady-state VO2.

Abstract

A previous study (Grassi B, Gladden LB, Samaja M, Stary CM, and Hogan MC, J Appl Physiol 85: 1394-1403, 1998) showed that convective O(2) delivery to muscle did not limit O(2) uptake (VO(2)) on-kinetics during transitions from rest to contractions at approximately 60% of peak VO(2). The present study aimed to determine whether this finding is also true for transitions involving contractions of higher metabolic intensities. VO(2) on-kinetics were determined in isolated canine gastrocnemius muscles in situ (n = 5) during transitions from rest to 4 min of electrically stimulated isometric tetanic contractions corresponding to the muscle peak VO(2). Two conditions were compared: 1) spontaneous adjustment of muscle blood flow (Q) (Control) and 2) pump-perfused Q, adjusted approximately 15-30 s before contractions at a constant level corresponding to the steady-state value during contractions in Control (Fast O(2) Delivery). In Fast O(2) Delivery, adenosine was infused intra-arterially. Q was measured continuously in the popliteal vein; arterial and popliteal venous O(2) contents were measured at rest and at 5- to 7-s intervals during the transition. Muscle VO(2) was determined as Q times the arteriovenous blood O(2) content difference. The time to reach 63% of the VO(2) difference between resting baseline and steady-state values during contractions was 24.9 +/- 1.6 (SE) s in Control and 18.5 +/- 1.8 s in Fast O(2) Delivery (P < 0.05). Faster VO(2) on-kinetics in Fast O(2) Delivery was associated with an approximately 30% reduction in the calculated O(2) deficit and with less muscle fatigue. During transitions involving contractions at peak VO(2), convective O(2) delivery to muscle, together with an inertia of oxidative metabolism, contributes in determining the VO(2) on-kinetics.

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Cite This Study

Grassi et al. (2000) studied this question.

synapsesocial.com/papers/6a7b7bf38d250a4360f46c75https://doi.org/10.1152/jappl.2000.89.4.1293
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