The Visual Neuroscience of Robotic Grasping : Achieving Sensorimotor Skills through Dorsal-Ventral Stream Integration / by Eris Chinellato, Angel P del Pobil
By: Chinellato, Eris
Contributor(s): SpringerLink (Online service)
| Del Pobil, Angel P.
Material type:
E-bookSeries: (Cognitive Systems Monographs, 1867-4925; 28).Publisher: Cham : Springer International Publishing, 2016Description: 1 recurso en línea (XIII, 165 páginas) : 56 ilustraciones, 30 ilustraciones en color.ISBN: 9783319203034.Subject: Neurociencias
| Item type | Current library | Collection | Call number | Copy number | Status | Date due | Barcode | Item holds | |
|---|---|---|---|---|---|---|---|---|---|
LIBRO-E NO PRÉSTAMO
|
Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | TJ211.4 C456 2016 EB (Browse shelf(Opens below)) | .i11584130 | Acceso electrónico | eBOOK .i11584130 |
Browsing Madrid Digital shelves, Shelving location: Acceso Electrónico (UEM) Close shelf browser (Hides shelf browser)
| TJ211.4 2021 EB Novel Bioinspired Actuator Designs for Robotics | TJ211.4 2022 EB Robot Dynamic Manipulation : Perception of Deformable Objects and Nonprehensile Manipulation Control | TJ211.4 2024 EB Omnidirectional Tilt-Rotor Flying Robots for Aerial Physical Interaction : Modelling, Control, Design and Experiments | TJ211.4 C456 2016 EB The Visual Neuroscience of Robotic Grasping : Achieving Sensorimotor Skills through Dorsal-Ventral Stream Integration | TJ211.4 D363 2016 EB Dance Notations and Robot Motion | TJ211.4 G466 2017 EB Geometric and numerical foundations of movements | TJ211.4 M685 2015 EB Motion and Operation Planning of Robotic Systems Background and Practical Approaches |
Introduction -- The Neuroscience of Action and Perception -- Intelligent Robotic Grasping? -- Vision-Based Grasping, where Robotics Meets Neuroscience -- Extraction of Grasp-Related Visual Features -- Visuomotor Transformations for Grasp Planning and Execution -- An Ever-Developing Research Framework.
This book presents interdisciplinary research that pursues the mutual enrichment of neuroscience and robotics. Building on experimental work, and on the wealth of literature regarding the two cortical pathways of visual processing - the dorsal and ventral streams - we define and implement, computationally and on a real robot, a functional model of the brain areas involved in vision-based grasping actions. Grasping in robotics is largely an unsolved problem, and we show how the bio-inspired approach is successful in dealing with some fundamental issues of the task. Our robotic system can safely perform grasping actions on different unmodeled objects, denoting especially reliable visual and visuomotor skills. The computational model and the robotic experiments help in validating theories on the mechanisms employed by the brain areas more directly involved in grasping actions. This book offers new insights and research hypotheses regarding such mechanisms, especially for what concerns the interaction between the dorsal and ventral streams. Moreover, it helps in establishing a common research framework for neuroscientists and roboticists regarding research on brain functions.
There are no comments on this title.