Flexible Macroblock Ordering for Context-Aware Ultrasound Video Transmission over Mobile WiMAX

The most recent network technologies are enabling a variety of new applications, thanks to the provision of increased bandwidth and better management of Quality of Service. Nevertheless, telemedical services involving multimedia data are still lagging behind, due to the concern of the end users, tha...

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Main Authors: Maria G. Martini, Chaminda T. E. R. Hewage
Format: Article
Language:English
Published: Hindawi Limited 2010-01-01
Series:International Journal of Telemedicine and Applications
Online Access:http://dx.doi.org/10.1155/2010/127519
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spelling doaj-a7cf33fddc2443d5b40d1e055d0fef8f2020-11-24T23:47:35ZengHindawi LimitedInternational Journal of Telemedicine and Applications1687-64151687-64232010-01-01201010.1155/2010/127519127519Flexible Macroblock Ordering for Context-Aware Ultrasound Video Transmission over Mobile WiMAXMaria G. Martini0Chaminda T. E. R. Hewage1Wireless Multimedia Networking Research Group, Kingston University, London, UKWireless Multimedia Networking Research Group, Kingston University, London, UKThe most recent network technologies are enabling a variety of new applications, thanks to the provision of increased bandwidth and better management of Quality of Service. Nevertheless, telemedical services involving multimedia data are still lagging behind, due to the concern of the end users, that is, clinicians and also patients, about the low quality provided. Indeed, emerging network technologies should be appropriately exploited by designing the transmission strategy focusing on quality provision for end users. Stemming from this principle, we propose here a context-aware transmission strategy for medical video transmission over WiMAX systems. Context, in terms of regions of interest (ROI) in a specific session, is taken into account for the identification of multiple regions of interest, and compression/transmission strategies are tailored to such context information. We present a methodology based on H.264 medical video compression and Flexible Macroblock Ordering (FMO) for ROI identification. Two different unequal error protection methodologies, providing higher protection to the most diagnostically relevant data, are presented.http://dx.doi.org/10.1155/2010/127519
collection DOAJ
language English
format Article
sources DOAJ
author Maria G. Martini
Chaminda T. E. R. Hewage
spellingShingle Maria G. Martini
Chaminda T. E. R. Hewage
Flexible Macroblock Ordering for Context-Aware Ultrasound Video Transmission over Mobile WiMAX
International Journal of Telemedicine and Applications
author_facet Maria G. Martini
Chaminda T. E. R. Hewage
author_sort Maria G. Martini
title Flexible Macroblock Ordering for Context-Aware Ultrasound Video Transmission over Mobile WiMAX
title_short Flexible Macroblock Ordering for Context-Aware Ultrasound Video Transmission over Mobile WiMAX
title_full Flexible Macroblock Ordering for Context-Aware Ultrasound Video Transmission over Mobile WiMAX
title_fullStr Flexible Macroblock Ordering for Context-Aware Ultrasound Video Transmission over Mobile WiMAX
title_full_unstemmed Flexible Macroblock Ordering for Context-Aware Ultrasound Video Transmission over Mobile WiMAX
title_sort flexible macroblock ordering for context-aware ultrasound video transmission over mobile wimax
publisher Hindawi Limited
series International Journal of Telemedicine and Applications
issn 1687-6415
1687-6423
publishDate 2010-01-01
description The most recent network technologies are enabling a variety of new applications, thanks to the provision of increased bandwidth and better management of Quality of Service. Nevertheless, telemedical services involving multimedia data are still lagging behind, due to the concern of the end users, that is, clinicians and also patients, about the low quality provided. Indeed, emerging network technologies should be appropriately exploited by designing the transmission strategy focusing on quality provision for end users. Stemming from this principle, we propose here a context-aware transmission strategy for medical video transmission over WiMAX systems. Context, in terms of regions of interest (ROI) in a specific session, is taken into account for the identification of multiple regions of interest, and compression/transmission strategies are tailored to such context information. We present a methodology based on H.264 medical video compression and Flexible Macroblock Ordering (FMO) for ROI identification. Two different unequal error protection methodologies, providing higher protection to the most diagnostically relevant data, are presented.
url http://dx.doi.org/10.1155/2010/127519
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