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This work provides both a theoretical background and practical guidelines in the area of design and developments of interactive multimedia systems. It consists of examples and sample case studies taking the reader through the design and development process steps. The theoretical backbone of the book includes discussion of HCI, particularly user interface design, and other related issues such as usability engineering. The practical issues it looks at include: media integration issues; hypermedia design models; multimedia authoring tools, and the design and development process. The book also includes demo versions of authoring tools and galleries of developed products to give the student insight into what is possible through multimedia.
This research book presents some specific multimedia systems that have been developed and applied in practice. More specifically, it consists of an editorial, an introductory chapter and six chapters as below. · Use of Multi-attribute Decision Making for Combining Audio-Lingual and Visual-Facial Modalities in Emotion Recognition. . Cooperative Learning assisted by Automatic Classification within Social Networking Services. . Improving Peer-to-Peer Communication in e-Learning by Development of an Advanced Messaging System. · Fuzzy-based Digital Video Stabilization in Static Scenes. · Development of Architecture, Information Archive and Multimedia Formats for Digital e-Libraries. · Layered Ontological Image for Intelligent Interaction to extend User Capabilities on Multimedia Systems in a Folksonomy Driven Environment.
This new volume explores how the merging of interactive multimedia with artificial intelligence has created new and advanced tools in healthcare. It looks at how the latest technologies (artificial intelligence, deep learning, machine learning, big data, IoT, smart device, etc.) help to manage health data, diagnose health issues, monitor treatment, predict pandemic diseases, and more. The book covers several important applications of multimedia in healthcare, including for data visualization purposes, for computer vision for elder healthcare monitoring, for detection of lung nodules, for management systems using machine learning techniques, and for fusion applications in medical image processing. The chapter authors discuss using data mining and machine learning techniques for COVID-19 diagnosis and prediction, in detecting knee osteoarthritis using texture descriptor algorithms, in applying algorithms in fetal ECG enhancement using blockchain for wearable internet of things in healthcare, and more. A chapter also reviews how doctors can make good use of genomics and genetic data through advanced technology. The book concludes with discussions of open issues, challenges, and future research directions for using intelligent interactive multimedia in healthcare. Key features: Provides an in-depth understanding of emerging technologies and integration of artificial intelligence, deep learning, big data, IoT in healthcare Details specific applications for the use of AI, big data, and IoT in healthcare Discusses how AI technology can help in formulating protective measures for COVID-19 and other diseases Includes case studies Intelligent Interactive Multimedia Systems for e-Healthcare Applications will be valuable to undergraduate and graduate students planning their careers in either industry or research and to software engineers for using multimedia with artificial intelligence, deep learning, big data, and IoT for healthcare applications.
At a time when computers are more widespread than ever, intelligent interactive systems have become a necessity. The term ‘multimedia systems’ refers to the coordinated storage, processing, transmission and retrieval of multiple forms of information, such as audio, image, video, animation, graphics and text. The growth of multimedia services has been exponential, as technological progress keeps up with the consumer’s need for content. The solution of 'one fits all' is no longer appropriate for the wide ranges of users with various backgrounds and needs, so one important goal of many intelligent interactive systems is dynamic personalization and adaptivity to users. This book presents 37 papers summarizing the work and new research results presented at the 6th International Conference on Intelligent Interactive Multimedia Systems and Services (KES-IIMSS2013), held in Sesimbra, Portugal, in June 2013. The conference series focuses on research in the fields of intelligent interactive multimedia systems and services and provides an internationally respected forum for scientific research in related technologies and applications.
Introduction to Multimedia Systems
"This book illustrates how interactive music can be used for valorizing cultural heritage, content and archives not currently distributed due to lack of safety, suitable coding, or conversion technologies. It explains new methods of promoting music for entertainment, teaching, commercial and non-commercial purposes, and provides new services for those connected via PCs, mobile devices, whether sighted or print-impaired"--Provided by publisher.
This text emerges out of the need to share information and knowledge on the research and practices of using multimedia in various educational settings. It discusses issues relating to planning, designing and development of interactive multimedia, offering research data.
Multimedia technology has the potential to evolve the paradigm of end user computing, from the interactive text and graphics model that has developed since the 1950s, into one more compatible with the digital electronic world of the next century. Decreasing hardware costs, a relatively inexpensive storage capacity and a rapid increasing computing power and network bandwidth, all major requirements of multimedia applications, have contributed to the recent tremendous growth in production and use of multimedia contents. Interactive Multimedia Systems addresses these innovative technologies and how they can positively impact a variety of areas.
Principles of Interactive Multimedia introduces all the contributory fields that are necessary for informed, thoughtful design and development of multimedia systems to be delivered through CD, the web or other mechanisms. It adopts an inter-disciplinary approach. The focus is to explain the basics of all the contributing disciplines to the design of systems. The book equips readers to think about multimedia issues, at the same time as they are learning and applying skills. It will encourage development, innovation and creative operation using the tools of multimedia. Multimedia workers operate in teams with differing skills, and this book will give each member of the team an understanding of the skills of the rest of the team and hence a means of communicating with them effectively. It is closely related to the needs of practice and the real world, while being leading edge in what it proposes. Written by an Author with many years'||''' experience as lecturer and practitioner in multimedia applications, the book focuses on the underpinning models behind multimedia. Hitherto, practice has been to teach the material primarily as skill-based, with comparatively little theory of any sort, and no integrated theory at all. The subject is now reaching the level of maturity where such theory is being recognised as essential to the provision of adequate courses as an academic discipline. The book provides this integrated theoretical base by focussing on interaction as the key to system design, and particularly by using linguistic models to underpin a communication interpretation of multimedia. This unification is unique, but has been used with students over several years and is well received by those from both science and arts backgrounds. It has been positively received by other academics who have seen it.
This introduction to elementary signal processing connects theory and application, and bridges instruction between a book and a CD-ROM packed with video, software and more. The result is a unique, non-mathematical learning system using concepts drawn from modern brain research. Readers use the popular DasyLab metrology and control engineering program to develop applications. Processing of real signals is enabled via the sound card and the parallel port. Two hundred pre-programmed signal engineering systems and design transparencies are provided on the CD-ROM. There are numerous videos, more than 250 photos, and - most important – all "living" experiments and their results are visualized.