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Product Design and Mechanical Validation of a Cane-Type Robot for Fall Prevention., , , , and . ICARSC, page 246-251. IEEE, (2021)Engineering a Safer Future: Electronic Design and Validation of a Cane-Type Robot for Fall Prevention., , , and . ICARSC, page 193-198. IEEE, (2023)Provoking Artificial Slips and Trips towards Perturbation-Based Balance Training: A Narrative Review., , , and . Sensors, 22 (23): 9254 (2022)An intuitive visual interface for a real-time monitoring system for human gait using IMUs., and . ICARSC, page 153-158. IEEE, (2017)Two kinematic data-based approaches for cane event detection., , and . J. Ambient Intell. Humaniz. Comput., 14 (1): 567-579 (2023)Fall Risk Assessment Using Wearable Sensors: A Narrative Review., , and . Sensors, 22 (3): 984 (2022)Senior-oriented robotic devices and algorithms for personalised fall prediction and prevention. University of Minho, Portugal, (2022)Two Fall-Related and Kinematic Data-Based Approaches for an Instrumented Conventional Cane., and . IEEE Trans. Hum. Mach. Syst., 51 (5): 554-563 (2021)Inertial Data-Based AI Approaches for ADL and Fall Recognition., , , and . Sensors, 22 (11): 4028 (2022)Development of a Strategy to Predict and Detect Falls Using Wearable Sensors., , , and . J. Medical Syst., 43 (5): 134:1-134:15 (2019)