• DocumentCode
    1608412
  • Title

    A Countermeasure for Preventing Atrophy of Musculoskeletal System under Microgravity

  • Author

    Takeuchi, Ryo ; Tagawa, Yoshihiko ; Inada, Tomohisa ; Suetsugu, Ken ; Mimura, Koj I. ; Shiba, Naoto

  • Author_Institution
    Dept. of Mech. & Control Eng., Kyushu Inst. of Technol., Fukuoka
  • fYear
    2006
  • Firstpage
    5862
  • Lastpage
    5867
  • Abstract
    Weightless environments such as bed rest and spaceflight are associated with dramatic losses of muscle volume and bone mass that hinder patients\´ or astronauts\´ health and reintegration into daily life. We developed a novel "hybrid exercise" (HYB) as a countermeasure to prevent the losses by using electrically stimulated muscles to provide resistance to the voluntary motion of a muscle undergoing training. Unilateral lower leg suspension (ULLS) of four weeks was carried out for young males as a simulation model of the weightless environment. The HYB for healthy men increased muscle strength and bulk in flexor and extensor around the knee joint. These effects were confirmed in the ULLS group as well as in the case of healthy subjects. The HYB showed good effects on the femurs of the ULLS group, especially on the greater trochanter. Some parameters of electrical stimulation and noise reduction methods were examined for moderating stimulation and for evaluating the effect, respectively
  • Keywords
    aerospace biophysics; bioelectric phenomena; biomechanics; bone; muscle; zero gravity experiments; 4 w; atrophy prevention; bed rest; bone mass losses; electrically stimulated muscles; femurs; healthy subjects; hybrid exercise; knee joint; microgravity; muscle strength; muscle volume losses; musculoskeletal system; noise reduction methods; simulation model; spaceflight; trochanter; unilateral lower leg suspension; voluntary motion resistance; weightless environments; Atrophy; Bones; Electrical stimulation; Gravity; Mars; Moon; Muscles; Musculoskeletal system; Noise reduction; Protocols; ULLS; Weightless environment; countermeasure; electrical stimulation; hybrid exercise;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    SICE-ICASE, 2006. International Joint Conference
  • Conference_Location
    Busan
  • Print_ISBN
    89-950038-4-7
  • Electronic_ISBN
    89-950038-5-5
  • Type

    conf

  • DOI
    10.1109/SICE.2006.315451
  • Filename
    4108627