Achilles tendon moment arm length is smaller in children with cerebral palsy than in typically developing children.

Kalkman, Barbara M; Bar-On, Lynn; Cenni, Francesco; Maganaris, Constantinos N; Bass, Alfie; Holmes, Gill; Desloovere, Kaat; Barton, Gabor J et al. · J Biomech · 2017

case_control · Level III

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Abstract

When studying muscle and whole-body function in children with cerebral palsy (CP), knowledge about both internal and external moment arms is essential since they determine the mechanical advantage of a muscle over an external force. Here we asked if Achilles tendon moment arm (MA<sub>AT</sub>) length is different in children with CP and age-matched typically developing (TD) children, and if MA<sub>AT</sub> can be predicted from anthropometric measurements. Sixteen children with CP (age: 10y 7m±3y, 7 hemiplegia, 12 diplegia, GMFCS level: I (11) and II (8)) and twenty TD children (age: 10y 6m±3y) participated in this case-control study. MA<sub>AT</sub> was calculated at 20° plantarflexion by differentiating calcaneus displacement with respect to ankle angle. Seven anthropometric variables were measured and related to MA<sub>AT</sub>. We found normalized MA<sub>AT</sub> to be 15% (∼7mm) smaller in children with CP compared to TD children (p=0.003). MA<sub>AT</sub> could be predicted by all anthropometric measurements with tibia length explaining 79% and 72% of variance in children with CP and TD children, respectively. Our findings have important implications for clinical decision making since MA<sub>AT</sub> influences the mechanical advantage about the ankle, which contributes to movement function and is manipulated surgically.

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