1st Edition

Humanoid Robotics and Neuroscience Science, Engineering and Society

Edited By Gordon Cheng Copyright 2015
300 Pages
by CRC Press

300 Pages
by CRC Press

300 Pages
by CRC Press

Humanoid robots are highly sophisticated machines equipped with human-like sensory and motor capabilities. Today we are on the verge of a new era of rapid transformations in both science and engineering—one that brings together technological advancements in a way that will accelerate both neuroscience and robotics. Humanoid Robotics and Neuroscience: Science, Engineering and Society presents... Read more

Section I: Humanoid Robotics Perspectives to Neuroscience. Humanoid Robotics and Neuroscience: Science, Engineering and Society. Humanoid Brain Science.Section II: Emulating the Neuro-mechanisms with Humanoid Robots. Hands, Dexterity and the Brain. Humanoid Action, Recognition and the Brain: Stochastic Information Processing that Unifies Recognition and Generation of Motion Patterns - Toward Symbolical Understanding of the Continuous World. Humanoid Vision and the Brain: Foveal Vision for Humanoid Robots. Humanoid Robotics Motor Learning and Neuroscience: Representation and Control of the Task Space in Humans and Humanoid Robots. Humanoid Locomotion and the Brain. Humanoid Motor Control: Dynamics and the Brain. Section III: Leaping forward: Toward Cognitive Humanoid Robots. Learning from Examples: Imitation Learning Emerging Cognition. Cognitive Developmental Robotics towards Humanoid Science: Towards Language: Vocalization by Cognitive Developmental Robotics.

Biography

Gordon Cheng is the chair, founder, and director of the Institute for Cognitive Systems at the Technical University of Munich. From 2002–2008, he was the head of the Department of Humanoid Robotics and Computational Neuroscience, ATR Computational Neuroscience Laboratories, Kyoto, Japan. His research interests include humanoid robotics, cognitive systems, neuroengineering, real-time network robot control, brain–machine interfaces, biomimetics of human vision, computational neuroscience of vision, action understanding, human–robot interaction, active vision, mobile robot navigation, and object-oriented software construction.