Title of article :
Skeletal muscle transverse strain during isometric contraction at different lengths
Author/Authors :
C. C. van Donkelaar، نويسنده , , P. J. B. Willems، نويسنده , , A. M. M. Muijtjens، نويسنده , , M. R. DROST، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1999
Pages :
8
From page :
755
To page :
762
Abstract :
An important assumption in 2D numerical models of skeletal muscle contraction involves deformation in the third dimension of the included muscle section. The present paper studies the often used plane strain description. Therefore, 3D muscle surface deformation is measured from marker displacements during isometric contractions at various muscle lengths. Longitudinal strains at superficial muscle fibers (−14±2.6% at L0, n=57) and aponeurosis (0.8±0.9% at L0) decrease with increasing muscle length. The same holds for transverse muscle surface strains in superficial muscle fibers and aponeurosis, which are comparable at intermediate muscle length, but differ at long and short muscle length. Because transverse strains during isometric contraction change with initial muscle length, it is concluded that the effect of muscle length on muscle deformation cannot be studied in plane strain models. These results do not counteract the use of these models to study deformation in contractions with approximately −9% longitudinal muscle fiber strain, as transverse strain in superficial muscle fibers and in aponeurosis tissue is minimal in that case. Aponeurosis surface area change decreases with increasing initial muscle length, but muscle fiber surface area change is −11%, independent of muscle length. Assuming incompressible muscle material, this means that strain perpendicular to the muscle surface equals 11%. Taking the relationship between transverse and longitudinal muscle fiber strain into account, it is hypothesized that superficial muscle fibers flatten during isometric contractions.
Keywords :
Three-dimensional deformation , Aponeurosis , Gastrocnemius medialis muscle , Finite element model , plane strain
Journal title :
Journal of Biomechanics
Serial Year :
1999
Journal title :
Journal of Biomechanics
Record number :
450880
Link To Document :
بازگشت