Design and embedded control of a soft elbow exosuit
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Antonio Frisoli | Michele Xiloyannis | Domenico Chiaradia | Lorenzo Masia | Chris Wilson Antuvan | A. Frisoli | L. Masia | M. Xiloyannis | D. Chiaradia | C. W. Antuvan
[1] Leonardo Cappello,et al. A soft wearable robot for the shoulder: Design, characterization, and preliminary testing , 2017, 2017 International Conference on Rehabilitation Robotics (ICORR).
[2] Leonardo Cappello,et al. Special Collection: Affordable Rehabilitation and Assistive Technologies Preliminary design and control of a soft exosuit for assisting elbow movements and hand grasping in activities of daily living , 2017 .
[3] Guillaume Morel,et al. Connecting a Human Limb to an Exoskeleton , 2012, IEEE Transactions on Robotics.
[4] B. Freriks,et al. Development of recommendations for SEMG sensors and sensor placement procedures. , 2000, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[5] C. Walsh,et al. A soft robotic exosuit improves walking in patients after stroke , 2017, Science Translational Medicine.
[6] Kyu-Jin Cho,et al. Development and evaluation of a soft wearable weight support device for reducing muscle fatigue on shoulder , 2017, PloS one.
[7] G R Johnson,et al. Dynamics of the Upper Limb during Performance of the Tasks of Everyday Living—A Review of the Current Knowledge Base , 1996, Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine.
[8] Conor J. Walsh,et al. Stronger, Smarter, Softer: Next-Generation Wearable Robots , 2014, IEEE Robotics & Automation Magazine.
[9] Hong Kai Yap,et al. Design and Preliminary Feasibility Study of a Soft Robotic Glove for Hand Function Assistance in Stroke Survivors , 2017, Front. Neurosci..
[10] Conor Walsh,et al. Physical interface dynamics alter how robotic exosuits augment human movement: implications for optimizing wearable assistive devices , 2017, Journal of NeuroEngineering and Rehabilitation.
[11] Hugh M. Herr,et al. FlexSEA: Flexible, Scalable Electronics Architecture for wearable robotic applications , 2016, 2016 6th IEEE International Conference on Biomedical Robotics and Biomechatronics (BioRob).
[12] Leonardo Cappello,et al. Design and preliminary characterization of a soft wearable exoskeleton for upper limb , 2016, 2016 6th IEEE International Conference on Biomedical Robotics and Biomechatronics (BioRob).
[13] Leonardo Cappello,et al. Hierarchical Cascade Controller for Assistance Modulation in a Soft Wearable Arm Exoskeleton , 2017, IEEE Robotics and Automation Letters.
[14] Conor J. Walsh,et al. Assistance magnitude versus metabolic cost reductions for a tethered multiarticular soft exosuit , 2017, Science Robotics.
[15] Jaime E. Duarte,et al. The Myosuit: Bi-articular Anti-gravity Exosuit That Reduces Hip Extensor Activity in Sitting Transfers , 2017, Front. Neurorobot..
[16] Scott Kuindersma,et al. Human-in-the-loop Bayesian optimization of wearable device parameters , 2017, PloS one.
[17] Hugh M. Herr,et al. FlexSEA-Execute: Advanced motion controller for wearable robotic applications , 2016, 2016 6th IEEE International Conference on Biomedical Robotics and Biomechatronics (BioRob).
[18] Brendan T. Quinlivan,et al. Force Transfer Characterization of a Soft Exosuit for Gait Assistance , 2015 .
[19] Sunil K. Agrawal,et al. Enhancing Seated Stability Using Trunk Support Trainer (TruST) , 2017, IEEE Robotics and Automation Letters.