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Fooling the size-weight illusion - Using augmented reality to eliminate the effect of size on perceptions of heaviness and sensorimotor prediction.

, , , , и . Virtual Real., 25 (4): 1061-1070 (2021)

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Segmenting Instrumented Activities of Daily Living (IADL) Using Kinematic and Sensor Technology for the Assessment of Limb Apraxia., , и . HCI (29), том 374 из Communications in Computer and Information Science, стр. 158-162. Springer, (2013)The ventral fiber pathway for pantomime of object use., , , , , , , , , и 2 other автор(ы). NeuroImage, (2015)Fooling the size-weight illusion - Using augmented reality to eliminate the effect of size on perceptions of heaviness and sensorimotor prediction., , , , и . Virtual Real., 25 (4): 1061-1070 (2021)Application of Human Error Identification (HEI) Techniques to Cognitive Rehabilitation in Stroke Patients with Limb Apraxia., , , и . HCI (8), том 8011 из Lecture Notes in Computer Science, стр. 463-471. Springer, (2013)Creating Affording Situations: Coaching through Animate Objects., , , , и . Sensors, 17 (10): 2308 (2017)Preliminary Evaluation of a Personal Healthcare System Prototype for Cognitive eRehabilitation in a Living Assistance Domain., , , , , , , , , и . Sensors, 14 (6): 10213-10233 (2014)Interactive gait training device "walk-mate" for hemiparetic stroke rehabilitation., , , , и . IROS, стр. 2268-2274. IEEE, (2007)Handmade Task Tracking Applied to Cognitive Rehabilitation., , , , , , и . Sensors, 12 (10): 14214-14231 (2012)Different left brain regions are essential for grasping a tool compared with its subsequent use., , , , и . NeuroImage, 53 (1): 171-180 (2010)Force level independent representations of predictive grip force-load force coupling: A PET activation study., , , , , , , и . NeuroImage, 25 (1): 243-252 (2005)