Sibylle B. Thies, Ph.D.

Affiliations: 
University of Michigan, Ann Arbor, Ann Arbor, MI 
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"Sibylle Thies"
Mean distance: 17.61 (cluster 49)
 

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James A. Ashton-Miller grad student 2004 University of Michigan
 (Human gait on an irregular surface: Effects of age and peripheral neuropathy on step variability.)
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Publications

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Thies SB, Russell R, Al-Ani A, et al. (2020) An investigation of the effects of walking frame height and width on walking stability. Gait & Posture. 82: 248-253
Thies SB, Bates A, Costamagna E, et al. (2020) Are older people putting themselves at risk when using their walking frames? Bmc Geriatrics. 20: 90
Chadwell A, Kenney L, Granat M, et al. (2019) Upper limb activity of twenty myoelectric prosthesis users and twenty healthy anatomically intact adults. Scientific Data. 6: 199
Costamagna E, Thies SB, Kenney LPJ, et al. (2019) Objective measures of rollator user stability and device loading during different walking scenarios. Plos One. 14: e0210960
Sun M, Amor J, James CJ, et al. (2019) Methods to Characterize the Real-World Use of Rollators Using Inertial Sensors–A Feasibility Study Ieee Access. 7: 71387-71397
Chadwell A, Kenney L, Granat MH, et al. (2018) Upper limb activity in myoelectric prosthesis users is biased towards the intact limb and appears unrelated to goal-directed task performance. Scientific Reports. 8: 11084
Broadley RW, Klenk J, Thies SB, et al. (2018) Methods for the Real-World Evaluation of Fall Detection Technology: A Scoping Review. Sensors (Basel, Switzerland). 18
Thies SB, Kenney LP, Sobuh M, et al. (2017) Skill assessment in upper limb myoelectric prosthesis users: Validation of a clinically feasible method for characterising upper limb temporal and amplitude variability during the performance of functional tasks. Medical Engineering & Physics
Costamagna E, Thies SB, Kenney LPJ, et al. (2017) A generalisable methodology for stability assessment of walking aid users. Medical Engineering & Physics
Cheng TJ, Kenney L, Amor JD, et al. (2016) Characterisation of rollator use using inertial sensors. Healthcare Technology Letters. 3: 303-309
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