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Tytuł pozycji:

Dissociation between exercise intensity thresholds: mechanistic insights from supine exercise.

Tytuł:
Dissociation between exercise intensity thresholds: mechanistic insights from supine exercise.
Autorzy:
Goulding RP; Laboratory for Myology, Vrije Universiteit, Amsterdam, The Netherlands.; Applied Physiology Laboratory, Kobe Design University, Kobe, Japan.; Japan Society for Promotion of Sciences, Tokyo, Japan.
Marwood S; School of Health Sciences, Liverpool Hope University, Liverpool, United Kingdom.
Lei TH; College of Physical Education, Hubei Normal University, Huangshi, People's Republic of China.
Okushima D; Osaka International University, Moriguchi, Japan.
Poole DC; Departments of Anatomy and Physiology, and Kinesiology, Kansas State University, Manhattan, Kansas.
Barstow TJ; Departments of Anatomy and Physiology, and Kinesiology, Kansas State University, Manhattan, Kansas.
Kondo N; Applied Physiology Laboratory, Kobe University, Kobe, Japan.
Koga S; Applied Physiology Laboratory, Kobe Design University, Kobe, Japan.
Źródło:
American journal of physiology. Regulatory, integrative and comparative physiology [Am J Physiol Regul Integr Comp Physiol] 2021 Nov 01; Vol. 321 (5), pp. R712-R722. Date of Electronic Publication: 2021 Aug 25.
Typ publikacji:
Comparative Study; Journal Article; Research Support, Non-U.S. Gov't
Język:
English
Imprint Name(s):
Original Publication: Bethesda, Md. : American Physiological Society
MeSH Terms:
Energy Metabolism*
Exercise*
Muscle Contraction*
Oxygen Consumption*
Pulmonary Gas Exchange*
Supine Position*
Hemoglobins/*metabolism
Myoglobin/*blood
Quadriceps Muscle/*metabolism
Adolescent ; Adult ; Biomarkers/blood ; Electromyography ; Healthy Volunteers ; Humans ; Male ; Spectroscopy, Near-Infrared ; Time Factors ; Young Adult
Contributed Indexing:
Keywords: deoxy- + total (hemoglobin + myoglobin); exercise intensity thresholds; respiratory compensation point; supine exercise; time-resolved near-infrared spectroscopy
Substance Nomenclature:
0 (Biomarkers)
0 (Hemoglobins)
0 (Myoglobin)
9008-02-0 (deoxyhemoglobin)
Entry Date(s):
Date Created: 20210825 Date Completed: 20211108 Latest Revision: 20211108
Update Code:
20240104
DOI:
10.1152/ajpregu.00096.2021
PMID:
34431402
Czasopismo naukowe
This study tested the hypothesis that the respiratory compensation point (RCP) and breakpoint in deoxygenated [heme] [deoxy[heme] BP , assessed via near-infrared spectroscopy (NIRS)] during ramp incremental exercise would occur at the same metabolic rate in the upright (U) and supine (S) body positions. Eleven healthy men completed ramp incremental exercise tests in U and S. Gas exchange was measured breath-by-breath and time-resolved-NIRS was used to measure deoxy[heme] in the vastus lateralis (VL) and rectus femoris (RF). RCP (S: 2.56 ± 0.39, U: 2.86 ± 0.40 L·min -1 , P = 0.02) differed from deoxy[heme] BP in the VL in U (3.10 ± 0.44 L·min -1 , P = 0.002), but was not different in S in the VL (2.70 ± 0.50 L·min -1 , P = 0.15). RCP was not different from the deoxy[heme] BP in the RF for either position (S: 2.34 ± 0.48 L·min -1 , U: 2.76 ± 0.53 L·min -1 , P > 0.05). However, the deoxy[heme] BP differed between muscles in both positions ( P < 0.05), and changes in deoxy[heme] BP did not relate to ΔRCP between positions (VL: r  =   0.55, P = 0.080, RF: r  =   0.26, P = 0.44). The deoxy[heme] BP was consistently preceded by a breakpoint in total[heme], and was, in turn, itself preceded by a breakpoint in muscle surface electromyography (EMG). RCP and the deoxy[heme] BP can be dissociated across muscles and different body positions and, therefore, do not represent the same underlying physiological phenomenon. The deoxy[heme] BP may, however, be mechanistically related to breakpoints in total[heme] and muscle activity.

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