压缩(物理)
分散注意力
解剖
胸椎
椎骨
腰椎
生物医学工程
口腔正畸科
材料科学
医学
生物
复合材料
腰椎
神经科学
作者
Ian A. F. Stokes,Peter L. Mente,James C. Iatridis,Cornelia E. Farnum,David D. Aronsson
标识
DOI:10.2106/00004623-200210000-00016
摘要
Information about the growth rate and chondrocytic response to mechanical loads in rat vertebrae undergoing mechanically modulated growth will be helpful in determining how human vertebral growth might respond to altered loading states during progression or treatment of scoliosis and other growth-related angular skeletal deformities.
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