JAXA Repository / AIREX 未来へ続く、宙(そら)への英知

このアイテムに関連するファイルはありません。

タイトルThin filament diversity and physiological properties of fast and slow fiber types in astronaut leg muscles
著者(英)Costill, David L.; Thompson, Joyce L.; Bain, James L W.; Widrick, Jeffrey J.; Trappe, Todd A.; Riley, Danny A.; Trappe, Scott W.; Fitts, Robert H.
発行日2002-02-01
言語eng
内容記述Slow type I fibers in soleus and fast white (IIa/IIx, IIx), fast red (IIa), and slow red (I) fibers in gastrocnemius were examined electron microscopically and physiologically from pre- and postflight biopsies of four astronauts from the 17-day, Life and Microgravity Sciences Spacelab Shuttle Transport System-78 mission. At 2.5-microm sarcomere length, thick filament density is approximately 1,012 filaments/microm(2) in all fiber types and unchanged by spaceflight. In preflight aldehyde-fixed biopsies, gastrocnemius fibers possess higher percentages (approximately 23%) of short thin filaments than soleus (9%). In type I fibers, spaceflight increases short, thin filament content from 9 to 24% in soleus and from 26 to 31% in gastrocnemius. Thick and thin filament spacing is wider at short sarcomere lengths. The Z-band lattice is also expanded, except for soleus type I fibers with presumably stiffer Z bands. Thin filament packing density correlates directly with specific tension for gastrocnemius fibers but not soleus. Thin filament density is inversely related to shortening velocity in all fibers. Thin filament structural variation contributes to the functional diversity of normal and spaceflight-unloaded muscles.
NASA分類Life Sciences (General)
権利Copyright
URIhttps://repository.exst.jaxa.jp/dspace/handle/a-is/301779


このリポジトリに保管されているアイテムは、他に指定されている場合を除き、著作権により保護されています。