TY - JOUR
T1 - Changes in postural muscle dynamics as a function of age
AU - Huang, Robert P.
AU - Rubin, Clinton T.
AU - McLeod, Kenneth J.
PY - 1999/8
Y1 - 1999/8
N2 - Histologic studies have demonstrated both a decrease in size and loss in number of type H muscle fibers with increasing age. Although these age- related histologic changes are believed to result in decreased strength and functional capacity, age-related changes in muscle force dynamics have not been clearly elucidated. Using vibromyographic (VMG) techniques, we recorded muscle activity of the soleus in 40 healthy adult volunteers spanning the age range of 20-82 years to test whether changes in postural muscle dynamics, in the frequency range of 0.1-50 Hz were also associated with age. Although muscle dynamics below 15 Hz do not change with aging, the 30-50 Hz frequency components of the VMG were found to change significantly with advancing age (r = -.619, p = .0001). This was observed in both sexes independently. The observed age-related changes in muscle force dynamics demonstrate distinct physiologic alterations in muscle fiber activity. Further research will be required to fully elucidate the relationship between age-related changes in muscle fiber activity and other age-related conditions such as postural instability and osteoporosis.
AB - Histologic studies have demonstrated both a decrease in size and loss in number of type H muscle fibers with increasing age. Although these age- related histologic changes are believed to result in decreased strength and functional capacity, age-related changes in muscle force dynamics have not been clearly elucidated. Using vibromyographic (VMG) techniques, we recorded muscle activity of the soleus in 40 healthy adult volunteers spanning the age range of 20-82 years to test whether changes in postural muscle dynamics, in the frequency range of 0.1-50 Hz were also associated with age. Although muscle dynamics below 15 Hz do not change with aging, the 30-50 Hz frequency components of the VMG were found to change significantly with advancing age (r = -.619, p = .0001). This was observed in both sexes independently. The observed age-related changes in muscle force dynamics demonstrate distinct physiologic alterations in muscle fiber activity. Further research will be required to fully elucidate the relationship between age-related changes in muscle fiber activity and other age-related conditions such as postural instability and osteoporosis.
UR - https://www.scopus.com/pages/publications/0032850586
U2 - 10.1093/gerona/54.8.B352
DO - 10.1093/gerona/54.8.B352
M3 - Article
C2 - 10496541
AN - SCOPUS:0032850586
SN - 1079-5006
VL - 54
SP - B352-B357
JO - Journals of Gerontology - Series A Biological Sciences and Medical Sciences
JF - Journals of Gerontology - Series A Biological Sciences and Medical Sciences
IS - 8
ER -