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IEEE Transactions on Medical Robotics and Bionics
|
December 5, 2024
Functional resistance training during walking: do biomechanical and neural effects differ based on targeted joints?
Edward P Washabaugh, Chandramouli Krishnan
Restorative Neurology and Neuroscience
|
March 1, 2016
A low-cost system for coil tracking during transcranial magnetic stimulation
Edward P Washabaugh, Chandramouli Krishnan
Restorative Neurology and Neuroscience
|
March 13, 2018
A wearable resistive robot facilitates locomotor adaptations during gait
Edward P Washabaugh, Chandramouli Krishnan
Clinical Biomechanics (Bristol, Avon)
|
March 28, 2022
Functional resistance training methods for targeting patient-specific gait deficits: A review of devices and their effects on muscle activation, neural control, and gait mechanics
Edward P Washabaugh, Chandramouli Krishnan
Gait & Posture
|
January 10, 2024
Applying elastic resistance bands for gait training: A simulation-based study to determine how band configuration affects gait biomechanics and muscle activation
Sierra A Foley, Edward P Washabaugh
Restorative Neurology and Neuroscience
|
October 18, 2017
A novel low-cost approach for navigated transcranial magnetic stimulation
Jakob Rodseth, Edward P Washabaugh, Chandramouli Krishnan
Journal of Biomechanics
|
January 4, 2015
A low cost real-time motion tracking approach using webcam technology
Chandramouli Krishnan, Edward P Washabaugh, Yogesh Seetharaman
Gait & Posture
|
November 4, 2019
Functional resistance training during walking: Mode of application differentially affects gait biomechanics and muscle activation patterns
Edward P Washabaugh, Thomas E Augenstein, Chandramouli Krishnan
Gait & Posture
|
May 9, 2017
Reliable sagittal plane kinematic gait assessments are feasible using low-cost webcam technology
Robert J Saner, Edward P Washabaugh, Chandramouli Krishnan
Neuroscience
|
May 4, 2016
Low-level intermittent quadriceps activity during transcranial direct current stimulation facilitates knee extensor force-generating capacity
Edward P Washabaugh, Luciana Santos, Edward S Claflin, et al.
Page
of 4
Search research articles
Search
Showing results (1-10 of 37) with videos related to
Sort By:
Page
of 4
IEEE Transactions on Medical Robotics and Bionics
|
December 5, 2024
Functional resistance training during walking: do biomechanical and neural effects differ based on targeted joints?
Edward P Washabaugh, Chandramouli Krishnan
Restorative Neurology and Neuroscience
|
March 1, 2016
A low-cost system for coil tracking during transcranial magnetic stimulation
Edward P Washabaugh, Chandramouli Krishnan
Restorative Neurology and Neuroscience
|
March 13, 2018
A wearable resistive robot facilitates locomotor adaptations during gait
Edward P Washabaugh, Chandramouli Krishnan
Clinical Biomechanics (Bristol, Avon)
|
March 28, 2022
Functional resistance training methods for targeting patient-specific gait deficits: A review of devices and their effects on muscle activation, neural control, and gait mechanics
Edward P Washabaugh, Chandramouli Krishnan
Gait & Posture
|
January 10, 2024
Applying elastic resistance bands for gait training: A simulation-based study to determine how band configuration affects gait biomechanics and muscle activation
Sierra A Foley, Edward P Washabaugh
Restorative Neurology and Neuroscience
|
October 18, 2017
A novel low-cost approach for navigated transcranial magnetic stimulation
Jakob Rodseth, Edward P Washabaugh, Chandramouli Krishnan
Journal of Biomechanics
|
January 4, 2015
A low cost real-time motion tracking approach using webcam technology
Chandramouli Krishnan, Edward P Washabaugh, Yogesh Seetharaman
Gait & Posture
|
November 4, 2019
Functional resistance training during walking: Mode of application differentially affects gait biomechanics and muscle activation patterns
Edward P Washabaugh, Thomas E Augenstein, Chandramouli Krishnan
Gait & Posture
|
May 9, 2017
Reliable sagittal plane kinematic gait assessments are feasible using low-cost webcam technology
Robert J Saner, Edward P Washabaugh, Chandramouli Krishnan
Neuroscience
|
May 4, 2016
Low-level intermittent quadriceps activity during transcranial direct current stimulation facilitates knee extensor force-generating capacity
Edward P Washabaugh, Luciana Santos, Edward S Claflin, et al.
Page
of 4