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Medicine and Health Sciences Commons

Open Access. Powered by Scholars. Published by Universities.®

Marshall University

2015

Children

Articles 1 - 2 of 2

Full-Text Articles in Medicine and Health Sciences

Children Display Adult-Like Kinetic Pattern In The Time Domain But Not In The Frequency Domain While Walking With Ankle Load, Jianhua Wu, Toyin Ajisafe, Matthew Beerse, Huaqing Liang Aug 2015

Children Display Adult-Like Kinetic Pattern In The Time Domain But Not In The Frequency Domain While Walking With Ankle Load, Jianhua Wu, Toyin Ajisafe, Matthew Beerse, Huaqing Liang

Physical Therapy Faculty Research

While external load is added during locomotion, humans increase the activation of extensors during stance and suppress the initiation of flexors during swing. External load at the ankles, rather than on the waist or thigh, elicits higher activities from ankle extensors, and increases stride length and decreases cadence in adults. Spatiotemporal and kinematic patterns become adult-like in children aged 5-8 years. However, little is known if children show adult like kinetic patterns while walking with external load This study aimed to investigate differences in kinetic patterns between children and adults while walking with external ankle load using both time and …


Walking Pattern In Children With And Without Down Syndrome Via A Force-Driven Harmonic Oscillator Model, Jianhua Wu, Matthew Beerse, Toyin Ajisafe, Huaqing Liang Aug 2015

Walking Pattern In Children With And Without Down Syndrome Via A Force-Driven Harmonic Oscillator Model, Jianhua Wu, Matthew Beerse, Toyin Ajisafe, Huaqing Liang

Physical Therapy Faculty Research

Children with Down syndrome (DS) display poorer kinematic and kinetic patterns of walking than typically developing ( TD) children. However, little is known on neuromuscular control in children with DS during locomotion. A force driven harmonic oscillator (FDHO) model sheds light on general muscular activation with respect to the gravitational load of the thigh-shank-foot system. The K/G ratio derived from this model represents a scaling between the elastic restoring torque from muscles and soft tissues and the gravitational torque from the weight of the leg during walking. The K/G ratio has shown different muscular function in infant walkers and children …