ErgoTac-Belt: Anticipatory Vibrotactile Feedback to Lead Centre of Pressure during Walking
暂无分享,去创建一个
[1] M. Bianchi,et al. Multi-Cue Haptic Guidance Through Wearables for Enhancing Human Ergonomics , 2021, IEEE Transactions on Haptics.
[2] Leif Johannsen,et al. Immediate Effects of Vibrotactile Biofeedback Instructions on Human Postural Control , 2021, 2021 43rd Annual International Conference of the IEEE Engineering in Medicine & Biology Society (EMBC).
[3] J. M. G. D. Gabriel,et al. Improving Standing Balance Performance through the Assistance of a Mobile Collaborative Robot , 2021, IEEE International Conference on Robotics and Automation.
[4] A. Ajoudani,et al. A Directional Vibrotactile Feedback Interface for Ergonomic Postural Adjustment , 2021, IEEE Transactions on Haptics.
[5] A González,et al. An extended statically equivalent serial chain-Identification of whole body center of mass with dynamic motion. , 2020, Gait & posture.
[6] Maura Casadio,et al. Vibrotactile Feedback for Improving Standing Balance , 2020, Frontiers in Bioengineering and Biotechnology.
[7] Jun Tan,et al. User Experience of Tactile Feedback on a Smartphone: Effects of Vibration Intensity, Times and Interval , 2019, HCI.
[8] Yasutaka Fujimoto,et al. A Robotic Cane for Balance Maintenance Assistance , 2019, IEEE Transactions on Industrial Informatics.
[9] C. Oddo,et al. A New Sensory Feedback System for Lower-Limb Amputees: Assessment of Discrete Vibrotactile Stimuli Perception During Walking , 2018, Biosystems & Biorobotics.
[10] Arash Ajoudani,et al. ErgoTac: A Tactile Feedback Interface for Improving Human Ergonomics in Workplaces , 2018, IEEE Robotics and Automation Letters.
[11] P. Shull,et al. Configurable, wearable sensing and vibrotactile feedback system for real-time postural balance and gait training: proof-of-concept , 2017, Journal of NeuroEngineering and Rehabilitation.
[12] Christina Zong-Hao Ma,et al. A wearable vibrotactile biofeedback system improves balance control of healthy young adults following perturbations from quiet stance. , 2017, Human movement science.
[13] Simona Crea,et al. Time-Discrete Vibrotactile Feedback Contributes to Improved Gait Symmetry in Patients With Lower Limb Amputations: Case Series , 2017, Physical therapy.
[14] Yasuhisa Hasegawa,et al. Fall Detection and Prevention Control Using Walking-Aid Cane Robot , 2016, IEEE/ASME Transactions on Mechatronics.
[15] Christina Zong-Hao Ma,et al. Balance Improvement Effects of Biofeedback Systems with State-of-the-Art Wearable Sensors: A Systematic Review , 2016, Sensors.
[16] B. Martin,et al. The effects of attractive vs. repulsive instructional cuing on balance performance , 2016, Journal of NeuroEngineering and Rehabilitation.
[17] Christina Zong-Hao Ma,et al. A Vibrotactile and Plantar Force Measurement-Based Biofeedback System: Paving the Way towards Wearable Balance-Improving Devices , 2015, Sensors.
[18] Dana D. Damian,et al. Haptic wearables as sensory replacement, sensory augmentation and trainer – a review , 2015, Journal of NeuroEngineering and Rehabilitation.
[19] Jungwon Yoon,et al. A Portable Gait Asymmetry Rehabilitation System for Individuals with Stroke Using a Vibrotactile Feedback , 2015, BioMed research international.
[20] Chang S. Nam,et al. Navigation by vibration: Effects of vibrotactile feedback on a navigation task , 2015 .
[21] Simona Crea,et al. Providing Time-Discrete Gait Information by Wearable Feedback Apparatus for Lower-Limb Amputees: Usability and Functional Validation , 2015, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[22] J. Allum,et al. The effects of vibrotactile biofeedback training on trunk sway in Parkinson's disease patients. , 2012, Parkinsonism & related disorders.
[23] Kathleen H. Sienko,et al. Directional postural responses induced by vibrotactile stimulations applied to the torso , 2012, Experimental Brain Research.
[24] Kathleen H Sienko,et al. Biofeedback improves postural control recovery from multi-axis discrete perturbations , 2012, Journal of NeuroEngineering and Rehabilitation.
[25] A. Galecki,et al. Effects of biofeedback on secondary-task response time and postural stability in older adults. , 2012, Gait & posture.
[26] S.M.N.A. Senanayake,et al. A Real-Time System With Assistive Feedback for Postural Control in Rehabilitation , 2010, IEEE/ASME Transactions on Mechatronics.
[27] Herman Kingma,et al. Salient and placebo vibrotactile feedback are equally effective in reducing sway in bilateral vestibular loss patients. , 2010, Gait & posture.
[28] J. Allum,et al. Effects of biofeedback on trunk sway during dual tasking in the healthy young and elderly. , 2009, Gait & posture.
[29] J. Demongeot,et al. Controlling posture using a plantar pressure-based, tongue-placed tactile biofeedback system , 2007, Experimental Brain Research.
[30] I. Melzer,et al. Postural stability in the elderly: a comparison between fallers and non-fallers. , 2004, Age and ageing.
[31] W. Leslie,et al. Preventing falls in elderly persons. , 2003, The New England journal of medicine.
[32] Erna Kentala,et al. Reduction of Postural Sway by Use of a Vibrotactile Balance Prosthesis Prototype in Subjects with Vestibular Deficits , 2003, The Annals of otology, rhinology, and laryngology.
[33] L. Rubenstein,et al. The epidemiology of falls and syncope. , 2002, Clinics in geriatric medicine.
[34] Conrad Wall,et al. Balance prosthesis based on micromechanical sensors using vibrotactile feedback of tilt , 2001, IEEE Transactions on Biomedical Engineering.
[35] K H Sienko,et al. The role of sensory augmentation for people with vestibular deficits: Real-time balance aid and/or rehabilitation device? , 2017, Journal of vestibular research : equilibrium & orientation.
[36] Simona Crea,et al. Time-Discrete Vibrotactile Feedback Contributes to Improved Gait Symmetry in Patients With Lower Limb Amputations: Case Series. , 2016, Physical therapy.
[37] F. Horak,et al. Postural Orientation and Equilibrium , 2011 .
[38] Lorna M. Brown,et al. Tactons: Structured Tactile Messages for Non-Visual Information Display , 2004, AUIC.