Architectural and functional specifics of the human triceps surae muscle in vivo and its adaptation to microgravity.
Тип публикации: Journal Article
Дата публикации: 2019-04-01
scimago Q1
wos Q1
БС1
SJR: 1.078
CiteScore: 6.0
Impact factor: 3.3
ISSN: 87507587, 15221601, 00218987
PubMed ID:
30571290
Physiology
Physiology (medical)
Краткое описание
Long-term exposure to microgravity (μG) is known to reduce the strength of a skeletal muscle contraction and the level of general physical performance in humans, while little is known about its effect on muscle architecture. Architectural and contractile properties of the triceps surae (TS) muscle were determined in vivo for male cosmonauts in response ( n = 8) to a spaceflight (213.0 ± 30.5 days). The maximal voluntary contraction (MVC), tetanic tension ( Ро), and voluntary and electrically evoked contraction times and force deficiency (Pd) were determined. The ankle was positioned at 15° dorsiflexion (-15°) and 0, 15, and 30° plantar flexion, with the knee set at 90°. At each position, longitudinal ultrasonic images of the medial (MG) and lateral (LG) gastrocnemius and soleus (SOL) muscles were obtained while the subject was relaxed. After a spaceflight, MVC and Pо decreased by 42 and 26%, respectively, and Pd increased by 50%. The rate of tension of a voluntary contraction substantially reduced but evoked contractions remained unchanged. In the passive condition, fiber length ( Lf) changed from 43, 57, and 35 mm (knee, 0°; ankle, -15°) to 34, 38, and 25 mm (knee, 0°; ankle, 30°) for MG, LG, and SOL, respectively, and Θf changed from 27, 21, and 23° (knee, 0°; ankle, -15°) to 43, 29, and 34° (knee, 0°; ankle, 30°) for MG, LG, and SOL, respectively. Different Lf and Θf, and their changes after spaceflight, might be related to differences in force-producing capabilities of the muscles and elastic characteristics of tendons and aponeuroses. NEW & NOTEWORTHY The present work was the first to combine measuring the fiber length and pennation angle (ultrasound imaging) as main determinants of mechanical force production and evaluating the muscle function after a long-duration spaceflight. The results demonstrate that muscles with different functional roles may differently respond to unloading, and this circumstance is important to consider when planning rehabilitation after unloading of any kind, paying particular attention to postural muscles.
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Koryak Y. A. Architectural and functional specifics of the human triceps surae muscle in vivo and its adaptation to microgravity. // Journal of Applied Physiology. 2019. Vol. 126. No. 4. pp. 880-893.
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Koryak Y. A. Architectural and functional specifics of the human triceps surae muscle in vivo and its adaptation to microgravity. // Journal of Applied Physiology. 2019. Vol. 126. No. 4. pp. 880-893.
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TY - JOUR
DO - 10.1152/japplphysiol.00634.2018
UR - https://doi.org/10.1152/japplphysiol.00634.2018
TI - Architectural and functional specifics of the human triceps surae muscle in vivo and its adaptation to microgravity.
T2 - Journal of Applied Physiology
AU - Koryak, Yuri A
PY - 2019
DA - 2019/04/01
PB - American Physiological Society
SP - 880-893
IS - 4
VL - 126
PMID - 30571290
SN - 8750-7587
SN - 1522-1601
SN - 0021-8987
ER -
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@article{2019_Koryak,
author = {Yuri A Koryak},
title = {Architectural and functional specifics of the human triceps surae muscle in vivo and its adaptation to microgravity.},
journal = {Journal of Applied Physiology},
year = {2019},
volume = {126},
publisher = {American Physiological Society},
month = {apr},
url = {https://doi.org/10.1152/japplphysiol.00634.2018},
number = {4},
pages = {880--893},
doi = {10.1152/japplphysiol.00634.2018}
}
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MLA
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Koryak, Yuri A.. “Architectural and functional specifics of the human triceps surae muscle in vivo and its adaptation to microgravity..” Journal of Applied Physiology, vol. 126, no. 4, Apr. 2019, pp. 880-893. https://doi.org/10.1152/japplphysiol.00634.2018.
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