Michael E. Hahn, Ph.D.

Affiliations: 
2003 University of Oregon, Eugene, OR, United States 
Area:
Human Development, Biomedical Engineering
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"Michael Hahn"

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Li-Shan Chou grad student 2003 University of Oregon
 (Biomechanical assessment of balance control in the elderly: Muscular weakness and dynamic instability.)
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Publications

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Adamczyk PG, Roland M, Hahn ME. (2017) Sensitivity of biomechanical outcomes to independent variations of hindfoot and forefoot stiffness in foot prostheses. Human Movement Science. 54: 154-171
Hinkel-Lipsker JW, Hahn ME. (2015) Novel Kinetic Strategies Adopted in Asymmetric Split-Belt Treadmill Walking. Journal of Motor Behavior. 1-9
Adamczyk PG, Roland M, Hahn ME. (2013) Novel method to evaluate angular stiffness of prosthetic feet from linear compression tests. Journal of Biomechanical Engineering. 135: 104502-5
Hahn ME, Wright ES, Segal AD, et al. (2012) Comparative gait analysis of ankle arthrodesis and arthroplasty: initial findings of a prospective study. Foot & Ankle International. 33: 282-9
Seyedali M, Czerniecki JM, Morgenroth DC, et al. (2012) Co-contraction patterns of trans-tibial amputee ankle and knee musculature during gait. Journal of Neuroengineering and Rehabilitation. 9: 29
Segal AD, Shofer J, Hahn ME, et al. (2012) Functional limitations associated with end-stage ankle arthritis. The Journal of Bone and Joint Surgery. American Volume. 94: 777-83
Sawers A, Hahn ME. (2012) Regulation of whole-body frontal plane balance varies within a step during unperturbed walking. Gait & Posture. 36: 322-4
Segal AD, Zelik KE, Klute GK, et al. (2012) The effects of a controlled energy storage and return prototype prosthetic foot on transtibial amputee ambulation Human Movement Science. 31: 918-931
Morgenroth DC, Segal AD, Zelik KE, et al. (2011) The effect of prosthetic foot push-off on mechanical loading associated with knee osteoarthritis in lower extremity amputees Gait and Posture. 34: 502-507
Sawers AB, Hahn ME. (2010) The potential for error with use of inverse dynamic calculations in gait analysis of individuals with lower limb loss: A review of model selection and assumptions Journal of Prosthetics and Orthotics. 22: 56-61
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