On the role of skeletal muscle acidosis and inorganic phosphates as determinants of central and peripheral fatigue: A 31P‐MRS study. (2nd June 2022)
- Record Type:
- Journal Article
- Title:
- On the role of skeletal muscle acidosis and inorganic phosphates as determinants of central and peripheral fatigue: A 31P‐MRS study. (2nd June 2022)
- Main Title:
- On the role of skeletal muscle acidosis and inorganic phosphates as determinants of central and peripheral fatigue: A 31P‐MRS study
- Authors:
- Hureau, Thomas J.
Broxterman, Ryan M.
Weavil, Joshua C.
Lewis, Matthew T.
Layec, Gwenael
Amann, Markus - Abstract:
- Abstract : Abstract: Intramuscular hydrogen ion (H + ) and inorganic phosphate (Pi) concentrations were dissociated during exercise to challenge their relationships with peripheral and central fatigue in vivo . Ten recreationally active, healthy men (27 ± 5 years; 180 ± 4 cm; 76 ± 10 kg) performed two consecutive intermittent isometric single‐leg knee‐extensor trials (60 maximal voluntary contractions; 3 s contraction, 2 s relaxation) interspersed with 5 min of rest. Phosphorus magnetic resonance spectroscopy ( 31 P‐MRS) was used to continuously quantify intramuscular [H + ] and [Pi] during both trials. Using electrical femoral nerve stimulation, quadriceps twitch force ( Q tw ) and voluntary activation (VA) were quantified at rest and throughout both trials. Decreases in Q tw and VA from baseline were used to determine peripheral and central fatigue, respectively. Q tw was strongly related to both [H + ] (β coefficient: −0.9, P < 0.0001) and [Pi] (−1.1, P < 0.0001) across trials. There was an effect of trial on the relationship between Q tw and [H + ] (−0.5, P < 0.0001), but not Q tw and [Pi] (0.0, P = 0.976). This suggests that, unlike the unaltered association with [Pi], a given level of peripheral fatigue was associated with a different [H + ] in Trial 1 vs . Trial 2. VA was related to [H + ] (−0.3, P < 0.0001), but not [Pi] (−0.2, P = 0.243), across trials and there was no effect of trial (−0.1, P = 0.483). Taken together, these results support intramuscular PiAbstract : Abstract: Intramuscular hydrogen ion (H + ) and inorganic phosphate (Pi) concentrations were dissociated during exercise to challenge their relationships with peripheral and central fatigue in vivo . Ten recreationally active, healthy men (27 ± 5 years; 180 ± 4 cm; 76 ± 10 kg) performed two consecutive intermittent isometric single‐leg knee‐extensor trials (60 maximal voluntary contractions; 3 s contraction, 2 s relaxation) interspersed with 5 min of rest. Phosphorus magnetic resonance spectroscopy ( 31 P‐MRS) was used to continuously quantify intramuscular [H + ] and [Pi] during both trials. Using electrical femoral nerve stimulation, quadriceps twitch force ( Q tw ) and voluntary activation (VA) were quantified at rest and throughout both trials. Decreases in Q tw and VA from baseline were used to determine peripheral and central fatigue, respectively. Q tw was strongly related to both [H + ] (β coefficient: −0.9, P < 0.0001) and [Pi] (−1.1, P < 0.0001) across trials. There was an effect of trial on the relationship between Q tw and [H + ] (−0.5, P < 0.0001), but not Q tw and [Pi] (0.0, P = 0.976). This suggests that, unlike the unaltered association with [Pi], a given level of peripheral fatigue was associated with a different [H + ] in Trial 1 vs . Trial 2. VA was related to [H + ] (−0.3, P < 0.0001), but not [Pi] (−0.2, P = 0.243), across trials and there was no effect of trial (−0.1, P = 0.483). Taken together, these results support intramuscular Pi as a primary cause of peripheral fatigue, and muscle acidosis, probably acting on group III/IV muscle afferents in the interstitial space, as a contributor to central fatigue during exercise. Key points: We investigated the relationship between intramuscular metabolites and neuromuscular function in humans performing two maximal, intermittent, knee‐extension trials interspersed with 5 min of rest. Concomitant measurements of intramuscular hydrogen (H + ) and inorganic phosphate (Pi) concentrations, as well as quadriceps twitch‐force ( Q tw ) and voluntary activation (VA), were made throughout each trial using phosphorus magnetic resonance spectroscopy ( 31 P‐MRS) and electrical femoral nerve stimulations. Although [Pi] fully recovered prior to the onset of the second trial, [H + ] did not. Q tw was strongly related to both [H + ] and [Pi] across both trials. However, the relationship between Q tw and [H + ] shifted leftward from the first to the second trial, whereas the relationship between Q tw and [Pi] remained unaltered. VA was related to [H + ], but not [Pi], across both trials. These in vivo findings support the hypotheses of intramuscular Pi as a primary cause of peripheral fatigue, and muscle acidosis, probably acting on group III/IV muscle afferents, as a contributor to central fatigue. Abstract : Abstract figure legend Schematic diagram illustrating the experimental design and major findings. … (more)
- Is Part Of:
- Journal of physiology. Volume 600:Number 13(2022)
- Journal:
- Journal of physiology
- Issue:
- Volume 600:Number 13(2022)
- Issue Display:
- Volume 600, Issue 13 (2022)
- Year:
- 2022
- Volume:
- 600
- Issue:
- 13
- Issue Sort Value:
- 2022-0600-0013-0000
- Page Start:
- 3069
- Page End:
- 3081
- Publication Date:
- 2022-06-02
- Subjects:
- exercise -- intramuscular metabolic by‐product -- magnetic resonance spectroscopy -- neuromuscular fatigue
Physiology -- Periodicals
612.005 - Journal URLs:
- http://jp.physoc.org/ ↗
http://onlinelibrary.wiley.com/ ↗ - DOI:
- 10.1113/JP283036 ↗
- Languages:
- English
- ISSNs:
- 0022-3751
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 5039.000000
British Library DSC - BLDSS-3PM
British Library STI - ELD Digital store - Ingest File:
- 22283.xml