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Functional evaluation of robot end-point assisted gait re-education in chronic stroke survivors., , , , , , and . ICORR, page 1-7. IEEE, (2013)Testing Dynamic Balance in People with Multiple Sclerosis: A Correlational Study between Standard Posturography and Robotic-Assistive Device., , , , , , , and . Sensors, 24 (11): 3325 (June 2024)Modified Functional Reach Test: Upper-Body Kinematics and Muscular Activity in Chronic Stroke Survivors., , , , , , and . Sensors, 22 (1): 230 (2022)Walking after incomplete spinal cord injury: changes in muscle activations due to training with a robotic powered exoskeleton., , , , , , , and . BioRob, page 382-389. IEEE, (2020)Robot-based assessment of sitting and standing balance: preliminary results in Parkinson's disease., , , , , , , , , and 2 other author(s). ICORR, page 570-576. IEEE, (2019)Changes in neuromuscular activity during motor training with a body-machine interface after spinal cord injury., , , , , , , , , and 3 other author(s). ICORR, page 1100-1105. IEEE, (2017)Design and Development of a Novel Core, Balance and Lower Limb Rehabilitation Robot: hunova®., , , , , , and . ICORR, page 417-422. IEEE, (2019)A robot-based assessment of trunk control in Spinal Cord Injured athletes., , , , , , , , , and . BioRob, page 497-502. IEEE, (2020)