Extended exposure to microgravity leads to significant musculoskeletal adaptations. Contractile parameters of four skeletal muscles (biceps brachii–BB, vastus medialis–VM, biceps femoris–BF and gastrocnemius medialis–GM) were measured in ten healthy males (aged 22.3 ± 2.2 years) during 35 days of horizontal bed rest by a mechanomyography-based method termed ‘tensiomyography’ (TMG). Two contractile parameters: contraction time (Tc) and maximal displacement (Dm) were individually measured from electrically evoked maximal single twitch TMG response of all four muscles before and after bed rest. Significant changes in Tc were found after bed rest, as shown by an increase in GM muscle Tc by 18% (p < 0.01). Dm values significantly increased (p < ...
The aim of the present study was to assess the time course and the origin of adaptations in neuromus...
The aim of the present study was to assess the time course and the origin of adaptations in neuromus...
Exposure to microgravity, i.e., spaceflight, causes muscle unloading leading to muscle atrophy and ...
Extended exposure to microgravity leads to significant musculoskeletal adaptations. Contractile para...
The aim of the present study was to investigate the changes in thickness, fascicle length (L f) and ...
The aim of the present study was to investigate the changes in thickness, fascicle length (L (f)) an...
Muscle weakness and atrophy are well-known consequences of microgravity exposure. However, little is...
In young and older people, skeletal muscle mass is reduced after as little as 7 days of disuse. The ...
The human resting muscle tone (HRMT) system provides structural and functional support to skeletal m...
Introduction Strongly restricted muscle activity or complete immobilization result in decrease in mu...
doi:10.1152/japplphysiol.01294.2010.—Preservation of muscle function, known to decline in microgravi...
Ten male volunteers underwent a period of prolonged bed rest. Four subjects performed exercise count...
The human resting muscle tone (HRMT) system provides structural and functional support to skeletal m...
Space permanence simulations such as prolonged bed-rest can mimic some of the physiological modifica...
12siSpace analogues, such as bed rest, are used to reproduce microgravity-induced morphological and ...
The aim of the present study was to assess the time course and the origin of adaptations in neuromus...
The aim of the present study was to assess the time course and the origin of adaptations in neuromus...
Exposure to microgravity, i.e., spaceflight, causes muscle unloading leading to muscle atrophy and ...
Extended exposure to microgravity leads to significant musculoskeletal adaptations. Contractile para...
The aim of the present study was to investigate the changes in thickness, fascicle length (L f) and ...
The aim of the present study was to investigate the changes in thickness, fascicle length (L (f)) an...
Muscle weakness and atrophy are well-known consequences of microgravity exposure. However, little is...
In young and older people, skeletal muscle mass is reduced after as little as 7 days of disuse. The ...
The human resting muscle tone (HRMT) system provides structural and functional support to skeletal m...
Introduction Strongly restricted muscle activity or complete immobilization result in decrease in mu...
doi:10.1152/japplphysiol.01294.2010.—Preservation of muscle function, known to decline in microgravi...
Ten male volunteers underwent a period of prolonged bed rest. Four subjects performed exercise count...
The human resting muscle tone (HRMT) system provides structural and functional support to skeletal m...
Space permanence simulations such as prolonged bed-rest can mimic some of the physiological modifica...
12siSpace analogues, such as bed rest, are used to reproduce microgravity-induced morphological and ...
The aim of the present study was to assess the time course and the origin of adaptations in neuromus...
The aim of the present study was to assess the time course and the origin of adaptations in neuromus...
Exposure to microgravity, i.e., spaceflight, causes muscle unloading leading to muscle atrophy and ...