Types Of Vision Systems

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Bionic Vision Systems: A Simple Guide to Big Ideas

"Bionic Vision Systems: A Simple Guide to Big Ideas" offers a comprehensive and accessible introduction to the rapidly advancing field of artificial vision. Drawing from a wealth of interdisciplinary knowledge, the book takes readers on a journey that begins with the fundamentals of natural eyesight and seamlessly transitions into the technologies and innovations driving modern bionic vision. By comparing the intricate workings of the human visual system with the pioneering efforts in engineering, computer science, and material science, the guide underscores both the remarkable achievements and the ongoing challenges within this fascinating domain. With clear explanations, the book explores the core technologies underlying bionic vision—sensors, microelectronics, wireless communications, and sophisticated image processing powered by artificial intelligence. It illuminates how these breakthroughs have enabled the development of implantable devices, wearable alternatives, and revolutionary assistive technologies that restore sight and enhance the lives of individuals worldwide. The narrative is brought to life through accounts of real-world impact, including personal stories, transformative medical applications, and burgeoning uses beyond healthcare in areas like industry, education, and social inclusion. In addition to technical insights, "Bionic Vision Systems" thoughtfully considers the human dimensions of this innovation, addressing adaptation, rehabilitation, and the psychosocial effects on users. It provides a balanced discussion of ethical considerations, accessibility, and societal acceptance, setting the stage for future directions and the collaborative spirit propelling the field forward. Ideal for both newcomers and seasoned professionals, this book is a valuable resource for anyone seeking to understand the profound implications and big ideas behind restoring and augmenting human vision.
Computer Vision Systems

Following the highly successful International Conference on Computer Vision - stems held in Las Palmas, Spain (ICVS’99), this second International Workshop on Computer Vision Systems, ICVS 2001 was held as an associated workshop of the International Conference on Computer Vision in Vancouver, Canada. The organization of ICVS’99 and ICVS 2001 was motivated by the fact that the - jority of computer vision conferences focus on component technologies. However, Computer Vision has reached a level of maturity that allows us not only to p- form research on individual methods and system components but also to build fully integrated computer vision systems of signi cant complexity. This opens a number of new problems related to system architecture, methods for system synthesis and veri cation, active vision systems, control of perception and - tion, knowledge and system representation, context modeling, cue integration, etc. By focusing on methods and concepts for the construction of fully integrated vision systems, ICVS aims to bring together researchers interested in computer vision systems. Similar to the previous event in Las Palmas, ICVS 2001 was organized as a single-track workshop consisting of high-quality, previously unpublished papers on new and original research on computer vision systems. All contributions were presented orally. A total of 32 papers were submitted and reviewed thoroughly by program committee members. Twenty of them have been selected for p- sentation. We would like to thank all members of the organizing and program committee for their help in putting together a high-quality workshop.
Omnidirectional Vision Systems

Author: Luis Puig
language: en
Publisher: Springer Science & Business Media
Release Date: 2013-02-01
This work focuses on central catadioptric systems, from the early step of calibration to high-level tasks such as 3D information retrieval. The book opens with a thorough introduction to the sphere camera model, along with an analysis of the relation between this model and actual central catadioptric systems. Then, a new approach to calibrate any single-viewpoint catadioptric camera is described. This is followed by an analysis of existing methods for calibrating central omnivision systems, and a detailed examination of hybrid two-view relations that combine images acquired with uncalibrated central catadioptric systems and conventional cameras. In the remaining chapters, the book discusses a new method to compute the scale space of any omnidirectional image acquired with a central catadioptric system, and a technique for computing the orientation of a hand-held omnidirectional catadioptric camera.