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Alexander Aurand

Showing results (1-10 of 9) with videos related to

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Ergonomics|December 16, 2017
Biomechanically determined hand force limits protecting the low back during occupational pushing and pulling tasksEric B Weston, Alexander Aurand, Jonathan S Dufour, et al.
Human Factors|November 2, 2017
An Exploratory Electromyography-Based Coactivation Index for the Cervical SpinePeter Le, Alexander Aurand, Thomas M Best, et al.
Sensors (Basel, Switzerland)|February 11, 2023
Reliability of a Wearable Motion Tracking System for the Clinical Evaluation of a Dynamic Cervical Spine FunctionHamed Hani, Reid Souchereau, Anas Kachlan, et al.
Clinical Biomechanics (Bristol, Avon)|September 12, 2020
An electromyography-assisted biomechanical cervical spine model: Model development and validationMina Alizadeh, Alexander Aurand, Gregory G Knapik, et al.
Ergonomics|July 27, 2017
Development of a lumbar EMG-based coactivation index for the assessment of complex dynamic tasksPeter Le, Alexander Aurand, Benjamin A Walter, et al.
Advances in Complementary & Alternative Medicine|February 23, 2023
Reliability of a Wearable Motion System for Clinical Evaluation of Dynamic Lumbar Spine FunctionHamed Hani, Reid Souchereau, Anas Kachlan, et al.
Clinical Biomechanics (Bristol, Avon)|June 21, 2016
A biologically-assisted curved muscle model of the lumbar spine: Model structureJaejin Hwang, Gregory G Knapik, Jonathan S Dufour, et al.
Clinical Biomechanics (Bristol, Avon)|May 14, 2017
Development and testing of a moment-based coactivation index to assess complex dynamic tasks for the lumbar spinePeter Le, Alexander Aurand, Jonathan S Dufour, et al.
Regional Anesthesia and Pain Medicine|October 9, 2023
Wearable motion-based platform for functional spine health assessmentPrasath Mageswaran, Jonathan Dufour, Alexander Aurand, et al.
Pageof 1

Showing results (1-10 of 9) with videos related to

Sort By:
Pageof 1
Ergonomics|December 16, 2017
Biomechanically determined hand force limits protecting the low back during occupational pushing and pulling tasksEric B Weston, Alexander Aurand, Jonathan S Dufour, et al.
Human Factors|November 2, 2017
An Exploratory Electromyography-Based Coactivation Index for the Cervical SpinePeter Le, Alexander Aurand, Thomas M Best, et al.
Sensors (Basel, Switzerland)|February 11, 2023
Reliability of a Wearable Motion Tracking System for the Clinical Evaluation of a Dynamic Cervical Spine FunctionHamed Hani, Reid Souchereau, Anas Kachlan, et al.
Clinical Biomechanics (Bristol, Avon)|September 12, 2020
An electromyography-assisted biomechanical cervical spine model: Model development and validationMina Alizadeh, Alexander Aurand, Gregory G Knapik, et al.
Ergonomics|July 27, 2017
Development of a lumbar EMG-based coactivation index for the assessment of complex dynamic tasksPeter Le, Alexander Aurand, Benjamin A Walter, et al.
Advances in Complementary & Alternative Medicine|February 23, 2023
Reliability of a Wearable Motion System for Clinical Evaluation of Dynamic Lumbar Spine FunctionHamed Hani, Reid Souchereau, Anas Kachlan, et al.
Clinical Biomechanics (Bristol, Avon)|June 21, 2016
A biologically-assisted curved muscle model of the lumbar spine: Model structureJaejin Hwang, Gregory G Knapik, Jonathan S Dufour, et al.
Clinical Biomechanics (Bristol, Avon)|May 14, 2017
Development and testing of a moment-based coactivation index to assess complex dynamic tasks for the lumbar spinePeter Le, Alexander Aurand, Jonathan S Dufour, et al.
Regional Anesthesia and Pain Medicine|October 9, 2023
Wearable motion-based platform for functional spine health assessmentPrasath Mageswaran, Jonathan Dufour, Alexander Aurand, et al.
Pageof 1