Biblio
Filters: Author is Maria Martins [Clear All Filters]
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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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2014. Pedaling Parameters Behavior on Healthy Subjects: Towards a Rehabilitation Indication. 22ndEuropean Signal Processing Conference..
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2014. Dynamical System Approach for Obstacle Avoidance in a Smart Walker Device. . IEEE International Conference on Autonomous Robot Systems and Competitions (ICARSC).
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2013. Assessment of walker-assisted human interaction from LRF and wearable wireless inertial sensors. International Congress on Neurotechnology, Electronics and Informatics. Neurotechnix 2013.
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2011. A Novel Human-Machine interface for guiding Smart Walkers. The NeoASAS Purpose. IEEE-2012 ISSNIP Biosignals and Biorobotics for better and safer living Conference. .
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2015. A review of the functionalities of Smart Walkers. . Medical Engineering & Physics.
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2013. Real Time Control of the ASBGo walker through a physical human-robot interface. . Measurement. 48:77-86.
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2013. Multivariate Analysis of walker-assisted ambulation. 3rd Portuguese BioEngineering Meeting. :153-156.
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2012. Online control of a mobility assistance Smart Walker. 2012 IEEE 2nd Portuguese Meeting in Bioengineering. :1-6. Download: engbiomedica_mm_mestrado.pdf (319.29 KB)
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2014. Hybridization between Multi-objective Genetic Algorithm and Support Vector Machine for feature selection in walker-assisted gait. . Computer Methods and Programs in Biomedicine. 113:736-748.
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2014. Legs Tracking for Walker-Rehabilitation Purposes.. Proceedings of the 5th IEEE RAS/EMBS International Conference on Biomedical Robotics and Biomechatronics (BioRob2014).
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2012. A Preliminary Tests of Joint Angles Measurements with Wireless Inertial Sensors during assisted gait. Denmark-South America Workshop on Sustainable Technologies, Research and Innovation.
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2012. Smart Walker Control through the inference of the user’s command intentions. ICINCO. Download: icinco_2012_145_cameraf.pdf (557.92 KB)
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2014. Assessment of walker-assisted gait based on Principal Component Analysis and wireless inertial sensors. Brazilian Journal Biomedical Engineering. 30(3):1-12.
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2012. Assistive mobility devices focusing on Smart Walkers: Classification and review. Robotics and Autonomous Systems.
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2015. Smart Walker use for Ataxia’s Rehabilitation: Case Study. 2015 IEEE International Conference on Rehabilitation Robotics (ICORR).
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2013. Conceção, projeto e desenvolvimento de um “guiador” para um andarilho motorizado.. International Conference on Engineering UBI 2013 - ICEUBI2013.
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2015. Feature Reduction and Multi-Classification of Different Assistive Devices according to the gait pattern. . Disability and Rehabilitation: Assistive Technology.
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2014. Design, implementation and testing of a new user interface for a smart walker. IEEE International Conference on Autonomous Robot Systems and Competitions (ICARSC) .
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2013. A new integrated device to read user intentions when walking with a Smart Walker. INDIN 2013. :239-304.
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2012. Smart Walker Control through the inference of command intentions. Seminario CYTED de la Red Temática IBERADA V Jornadas AITADIS de Tecnologías de Apoyo a la Discapacidad: Experiencias y avances en tecnologías de accesibilidad para personas con discapacidad.
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2014. Gait Feature Selection in Walker-Assisted Gait Using NSGA-II and SVM Hybrid Algorithm.. 22nd European Signal Processing Conference..
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2011. Revisão e Classificação de Dispositivos de Treino e Reabilitação da Marcha Humana. VI Congreso deTecnologías de Apoyo a la Discapacidad IBERDISCAP.
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2015. Real-time gait assessment with an Active Depth sensor placed in a walker. . 2015 IEEE International Conference on Rehabilitation Robotics (ICORR.

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