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Effect of a knee-ankle-foot orthosis on knee kinematics and kinetics in an individual with varus knee alignment (2016)
Journal Article
Alfatafta, H., Hutchins, S., Liu, A., & Jones, R. (2016). Effect of a knee-ankle-foot orthosis on knee kinematics and kinetics in an individual with varus knee alignment. Journal of Prosthetics and Orthotics, 28(4), 186-190. https://doi.org/10.1097/JPO.0000000000000111

Background: Knee valgus braces are used to reduce knee load and varus deformities in individuals with medial compartment osteoarthritis (OA). The purpose of this study was to determine whether the kinematics and kinetics of the knee are improved when... Read More about Effect of a knee-ankle-foot orthosis on knee kinematics and kinetics in an individual with varus knee alignment.

A review of the design and clinical evaluation of the ShefStim array-based functional electrical stimulation system (2016)
Journal Article
Kenney, L., Heller, B., Barker, A., Reeves, M., Healey, J., Good, T., …Howard, D. (2016). A review of the design and clinical evaluation of the ShefStim array-based functional electrical stimulation system. Medical Engineering and Physics, 38(11), 1159 -1165. https://doi.org/10.1016/j.medengphy.2016.08.005

Functional electrical stimulation has been shown to be a safe and effective means of correcting foot drop of central neurological origin. Current surface-based devices typically consist of a single channel stim- ulator, a sensor for determining gait... Read More about A review of the design and clinical evaluation of the ShefStim array-based functional electrical stimulation system.

A novel method of using accelerometry for upper limb FES control (2016)
Journal Article
Sun, M., Kenney, L., Smith, C., Waring, K., Luckie, H., Liu, A., & Howard, D. (2016). A novel method of using accelerometry for upper limb FES control. Medical Engineering and Physics, 38(11), 1244-1250. https://doi.org/10.1016/j.medengphy.2016.06.005

This paper reports on a novel approach to using a 3-axis accelerometer to capture body segment angle for upper limb functional electrical stimulation (FES) control. The approach calculates the angle between the accelerome... Read More about A novel method of using accelerometry for upper limb FES control.