4.5 Article

Differential atrophy of the postero-lateral hip musculature during prolonged bedrest and the influence of exercise countermeasures

期刊

JOURNAL OF APPLIED PHYSIOLOGY
卷 110, 期 4, 页码 926-934

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/japplphysiol.01105.2010

关键词

muscle atrophy; magnetic resonance imaging; microgravity; whole body vibration

资金

  1. European Space Agency [14431/02/NL/SH2]
  2. German Aerospace Centre (DLR) [50WB0720]
  3. Novotec Medical
  4. Charite Universitatsmedizin Berlin
  5. Siemens
  6. Osteomedical Group
  7. Wyeth Pharma
  8. Servier Deutschland
  9. PG
  10. Kubivent
  11. Seca
  12. AstraZeneka
  13. General Electric
  14. Alexander von Humboldt Foundation

向作者/读者索取更多资源

Miokovic T, Armbrecht G, Felsenberg D, Belavy DL. Differential atrophy of the postero-lateral hip musculature during prolonged bedrest and the influence of exercise countermeasures. J Appl Physiol 110: 926-934, 2011. First published January 13, 2011; doi:10.1152/japplphysiol.01105.2010.-As part of the 2nd Berlin BedRest Study (BBR2-2), we investigated the pattern of muscle atrophy of the postero-lateral hip and hamstring musculature during prolonged inactivity and the effectiveness of two exercise countermeasures. Twenty-four male subjects underwent 60 days of head-down tilt bedrest and were assigned to an inactive control (CTR), resistive vibration exercise (RVE), or resistive exercise alone (RE) group. Magnetic resonance imaging (MRI) of the hip and thigh was taken before, during, and at end of bedrest. Volume of posterolateral hip and hamstring musculature was calculated, and the rate of muscle atrophy and the effect of countermeasure exercises were examined. After 60 days of bedrest, the CTR group showed differential rates of muscle volume loss (F = 21.44; P <= 0.0001) with fastest losses seen in the semi-membranosus, quadratus femoris and biceps femoris long head followed by the gluteal and remaining hamstring musculature. Whole body vibration did not appear to have an additional effect above resistive exercise in preserving muscle volume. RE and RVE prevented and/or reduced muscle atrophy of the gluteal, semimembranosus, and biceps femoris long head muscles. Some muscle volumes in the countermeasure groups displayed faster recovery times than the CTR group. Differential atrophy occurred in the posterolateral hip musculature following a prolonged period of unloading. Short-duration high-load resistive exercise during bedrest reduced muscle atrophy in the mono-articular hip extensors and selected hamstring muscles. Future countermeasure design should consider including isolated resistive hamstring curls to target this muscle group and reduce the potential for development of muscle imbalances.

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