Biblio
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2011. Influence of the robotic exoskeleton Lokomat on the control of human gait: an electromyographic and kinematic analysis. Engineering School. Master:153.
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2011. Preliminary evaluation of mechanical effects of robotic guidance during walking. International Bionic Engineering Conference 2011.
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2011. Revisão crítica das ortóteses activas para membros inferiores (Critical review of active orthoses for lower limbs). VI Congresso Iberoamericano de Tecnologías de Apoyo a la Discapacidad. II:369-377. Download: filipe_el_al_2011_aitadis.pdf (5.72 MB)
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2013. Similarity of muscle synergies in human walking and cycling: preliminary results. EMBC’13 - 35th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
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2013. Influence of the robotic exoskeleton Lokomat on the control of human gait: an electromyographic and kinematic analysis. 2013 IEEE 3rd Portuguese Meeting in Bioengineering (ENBENG).
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2013. Surface EMG in Neurorehabilitation and Ergonomics: State of the Art and Future Perspectives. Emerging Therapies in Neurorehabilitation. :267-284.
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2012. Control of robot-aided walking. :172. Abstract
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2014. Shared muscle synergies in human walking and cycling. Journal of Neurophysiology.
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2012. Muscular activation and kinetic effects of robotic guidance force on human walking. ICNR2012 (International Conference on NeuroRehabilitation). 1:pp787-791.
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2014. Pedaling Parameters Behavior on Healthy Subjects: Towards a Rehabilitation Indication. 22ndEuropean Signal Processing Conference..
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2014. The Application of Cycling and Cycling Combined with Feedback in the Rehabilitation of Stroke Patients: A Review. . Journal of stroke and cerebrovascular diseases: the official journal of National Stroke Association. 24(2):253–273.

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