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An automatic method to reconstruct human movement by considering a reduced number of information: Application to the automobile ingress movement.

, , , , and . IFAC HMS, page 344-349. International Federation of Automatic Control, (2010)

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Adaptive criteria for biped dynamic stability under external perturbations., and . IROS, page 192-199. IEEE, (1996)An Optimization Procedure to Reconstruct the Automobile Ingress Movement., , , and . ICINCO-RA (2), page 165-168. INSTICC Press, (2008)978-989-8111-31-9.A Neural Tactile Architecture Applied to Real-time Stiffness Estimation for a Large Scale of Robotic Grasping Systems., , , , and . J. Intell. Robotic Syst., 49 (4): 311-323 (2007)Design of a Social Game for Older Users Using Touchscreen Devices and Observations from an Exploratory Study., , and . HCI (6), volume 8515 of Lecture Notes in Computer Science, page 69-78. Springer, (2014)A Modular Neural Network Architecture to Learn the Kinematics of Hand Posture During Grasp., and . Control. Intell. Syst., (2005)A neural network architecture to learn arm motion planning in grasping tasks with obstacle avoidance., and . Robotica, 24 (2): 197-203 (2006)A method to learn hand grasping posture from noisy sensing information., and . Robotica, 22 (3): 309-318 (2004)Improving Accessibility of Tactile Interaction for Older Users: Lowering Accuracy Requirements to Support Drag-and-Drop Interaction., , and . DSAI, volume 67 of Procedia Computer Science, page 366-375. Elsevier, (2015)Grasping, coordination and optimal force distribution in multifingered mechanisms., , and . Robotica, 12 (3): 243-251 (1994)Real Time 3D Facial Emotion Classification using a Digital Signal PIC Microcontroller., , , , and . IPAS, page 285-290. IEEE, (2018)