| Literature DB >> 27866676 |
Abstract
The forces generated by the soleus muscle play an important role in standing and locomotion. The lengths of the sarcomeres of the soleus affect its force-generating capacity, yet it is unknown how sarcomere lengths in the soleus change as a function of ankle flexion angle. In this study, we used microendoscopy to measure resting sarcomere lengths at 10° plantarflexion and 20° dorsiflexion in 7 healthy individuals. Mean sarcomere lengths at 10° plantarflexion were 2.84±0.09µm (mean±S.E.M.), near the optimal length for sarcomere force generation. Sarcomere lengths were 3.43±0.09µm at 20° dorsiflexion, indicating that they were longer than optimal length when the ankle was in dorsiflexion and the muscle was inactive. Our results indicate a smaller sarcomere length difference between two ankle flexion angles compared to estimates from musculoskeletal models and suggest why these models frequently underestimate the force-generating capacity of the soleus.Entities:
Keywords: Ankle; In vivo imaging; Muscle; Sarcomere; Soleus
Mesh:
Year: 2016 PMID: 27866676 PMCID: PMC6050010 DOI: 10.1016/j.jbiomech.2016.11.010
Source DB: PubMed Journal: J Biomech ISSN: 0021-9290 Impact factor: 2.712