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Musculoskeletal simulation can help explain selective muscle degeneration in Duchenne muscular dystrophy
Author(s) -
Hu Xiao,
Blemker Silvia S.
Publication year - 2015
Publication title -
muscle and nerve
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.025
H-Index - 145
eISSN - 1097-4598
pISSN - 0148-639X
DOI - 10.1002/mus.24607
Subject(s) - duchenne muscular dystrophy , eccentric , dystrophin , medicine , physical medicine and rehabilitation , degeneration (medical) , muscular dystrophy , population , mdx mouse , gait , pathology , physics , environmental health , quantum mechanics
Duchenne muscular dystrophy (DMD) is a genetic disease that occurs due to the deficiency of the dystrophin protein. Although dystrophin is deficient in all muscles, it is unclear why degeneration progresses differently across muscles in DMD. We hypothesized that each muscle undergoes a different degree of eccentric contraction during gait, which could contribute to the selective degeneration in lower limb muscle, as indicated by various amounts of fatty infiltration. By comparing eccentric contractions quantified from a previous multibody dynamic musculoskeletal gait simulation and fat fractions quantified in a recent imaging study, our preliminary analyses show a strong correlation between eccentric contractions during gait and lower limb muscle fat fractions, supporting our hypothesis. This knowledge is critical for developing safe exercise regimens for the DMD population. This study also provides supportive evidence for using multiscale modeling and simulation of the musculoskeletal system in future DMD research. Muscle Nerve 52 : 174–182, 2015

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