Steven J. Stanhope

Affiliations: 
Department of Biomechanics and Movement Science University of Delaware, Newark, DE, United States 
Area:
Biomechanics Biophysics, Biomedical Engineering, Recreation
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"Steven Stanhope"
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Publications

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Hedrick EA, Stanhope SJ, Takahashi KZ. (2019) The foot and ankle structures reveal emergent properties analogous to passive springs during human walking. Plos One. 14: e0218047
Ebrahimi A, Collins JD, Kepple TM, et al. (2017) A mathematical analysis to address the 6 degree-of-freedom segmental power imbalance. Journal of Biomechanics
Ebrahimi A, Goldberg SR, Wilken JM, et al. (2017) Constituent Lower Extremity Work (CLEW) approach: A novel tool to visualize joint and segment work. Gait & Posture. 56: 49-53
Ebrahimi A, Goldberg SR, Stanhope SJ. (2017) Changes in relative work of the lower extremity joints and distal foot with walking speed. Journal of Biomechanics
Feeney D, Stanhope SJ, Kaminski TW, et al. (2015) Loaded Vertical Jumping: Force-Velocity Relationship, Work, and Power. Journal of Applied Biomechanics
Arch ES, Stanhope SJ, Higginson JS. (2015) Passive-dynamic ankle-foot orthosis replicates soleus but not gastrocnemius muscle function during stance in gait: Insights for orthosis prescription. Prosthetics and Orthotics International
Takahashi KZ, Horne JR, Stanhope SJ. (2015) Comparison of mechanical energy profiles of passive and active below-knee prostheses: a case study. Prosthetics and Orthotics International. 39: 150-6
Takahashi KZ, Stanhope SJ. (2013) Mechanical energy profiles of the combined ankle-foot system in normal gait: insights for prosthetic designs. Gait & Posture. 38: 818-23
Goldberg SR, Stanhope SJ. (2013) Sensitivity of joint moments to changes in walking speed and body-weight-support are interdependent and vary across joints. Journal of Biomechanics. 46: 1176-83
Takahashi KZ, Kepple TM, Stanhope SJ. (2012) A unified deformable (UD) segment model for quantifying total power of anatomical and prosthetic below-knee structures during stance in gait. Journal of Biomechanics. 45: 2662-7
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