Larry Forrester

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"Larry Forrester"
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Gama GL, Celestino ML, Barela JA, et al. (2016) Effects of gait training with body weight support on a treadmill vs. overground for individuals with stroke. Archives of Physical Medicine and Rehabilitation
Forrester LW, Roy A, Hafer-Macko C, et al. (2016) Task-specific ankle robotics gait training after stroke: a randomized pilot study. Journal of Neuroengineering and Rehabilitation. 13: 51
Eikema DJ, Forrester LW, Whitall J. (2014) Manipulating the stride length/stride velocity relationship of walking using a treadmill and rhythmic auditory cueing in non-disabled older individuals. A short-term feasibility study. Gait & Posture. 40: 712-4
Goodman RN, Rietschel JC, Roy A, et al. (2014) Increased reward in ankle robotics training enhances motor control and cortical efficiency in stroke. Journal of Rehabilitation Research and Development. 51: 213-27
Forrester LW, Roy A, Krywonis A, et al. (2014) Modular ankle robotics training in early subacute stroke: a randomized controlled pilot study. Neurorehabilitation and Neural Repair. 28: 678-87
Roy A, Krebs HI, Iqbal K, et al. (2014) Facilitating push-off propulsion: A biomechanical model of ankle robotics assistance for plantarflexion gait training in stroke Proceedings of the Ieee Ras and Embs International Conference On Biomedical Robotics and Biomechatronics. 656-663
Goodman RN, Rietschel JC, Roy A, et al. (2014) Ankle robotics training with concurrent physiological monitoring in multiple sclerosis: A case report Proceedings of the Ieee Ras and Embs International Conference On Biomedical Robotics and Biomechatronics. 393-397
Forrester LW, Roy A, Goodman RN, et al. (2013) Clinical application of a modular ankle robot for stroke rehabilitation. Neurorehabilitation. 33: 85-97
Roy A, Forrester LW, Macko RF, et al. (2013) Changes in passive ankle stiffness and its effects on gait function in people with chronic stroke. Journal of Rehabilitation Research and Development. 50: 555-72
Roy A, Krebs HI, Barton JE, et al. (2013) Anklebot-assisted locomotor training after stroke: A novel deficit-adjusted control approach Proceedings - Ieee International Conference On Robotics and Automation. 2175-2182
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