Antonis P. Stylianou, Ph.D.
Affiliations: | 2004 | University of Kansas, Lawrence, KS, United States |
Area:
Mechanical Engineering, Biomedical Engineering, Rehabilitation and TherapyGoogle:
"Antonis Stylianou"Parents
Sign in to add mentorCarl W. Luchies | grad student | 2004 | University of Kansas | |
(Local muscle fatigue of elbow flexors: SEMG analysis, and effects on motor control performance.) |
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Publications
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Mueller F, Bachar A, Arif MA, et al. (2023) Cognitive models for mentally visualizing a sharp instrument in a blind procedure. Global Surgical Education : Journal of the Association For Surgical Education. 2 |
Mueller F, Arif MA, Bachar A, et al. (2023) Surgeon estimation of retropubic trocar position in blind 3D space. International Urogynecology Journal |
Arif MA, Stylianou AP, Bachar A, et al. (2022) Retropubic trocar modified with a load cell to verify contact with pubic bone. Surgery |
Rahman M, Sharifi Renani M, Cil A, et al. (2018) Musculoskeletal Model Development of the Elbow Joint with an Experimental Evaluation. Bioengineering (Basel, Switzerland). 5 |
Rahman M, Cil A, Stylianou AP. (2016) Prediction of elbow joint contact mechanics in the multibody framework. Medical Engineering & Physics |
Rahman M, Cil A, Bogener JW, et al. (2016) Lateral collateral ligament deficiency of the elbow joint: A modeling approach. Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society |
Guess TM, Razu S, Jahandar H, et al. (2015) Predicted loading on the menisci during gait: The effect of horn laxity. Journal of Biomechanics. 48: 1490-8 |
Kia M, Stylianou AP, Guess TM. (2014) Evaluation of a musculoskeletal model with prosthetic knee through six experimental gait trials. Medical Engineering & Physics. 36: 335-44 |
Guess TM, Stylianou AP, Kia M. (2014) Concurrent prediction of muscle and tibiofemoral contact forces during treadmill gait. Journal of Biomechanical Engineering. 136: 021032 |
Stylianou AP, Guess TM, Cook JL. (2014) Development and validation of a multi-body model of the canine stifle joint. Computer Methods in Biomechanics and Biomedical Engineering. 17: 370-7 |