Video camera design and implementation for telemedicine application

Thesis (MScIng)--University of Stellenbosch, 2005. === ENGLISH ABSTRACT: Primary health care telemedicine services require the acquisition and transmission of patient data including high quality still and video images via telecommunication networks. The objective of this thesis is to investigate...

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Bibliographic Details
Main Author: Behaimanot, Kibreab Ghebrehiwet
Other Authors: Blanckenberg, M. M.
Format: Others
Language:en_ZA
Published: Stellenbosch : Stellenbosch University 2012
Subjects:
Online Access:http://hdl.handle.net/10019.1/20959
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spelling ndltd-netd.ac.za-oai-union.ndltd.org-sun-oai-scholar.sun.ac.za-10019.1-209592016-01-29T04:02:59Z Video camera design and implementation for telemedicine application Behaimanot, Kibreab Ghebrehiwet Blanckenberg, M. M. Stellenbosch University. Faculty of Engineering. Dept. of Electrical and Electronic Engineering. Telecommunication in medicine Medical telematics Theses -- Electronic engineering Dissertations -- Electronic engineering Thesis (MScIng)--University of Stellenbosch, 2005. ENGLISH ABSTRACT: Primary health care telemedicine services require the acquisition and transmission of patient data including high quality still and video images via telecommunication networks. The objective of this thesis is to investigate the implementation of a generalpurpose medical camera as an alternative to the complex and costly CCD based cameras generally in use at present. The design is based on FillFactory’s SXGA (1280 ×1024) CMOS image sensor. A low-cost Altera Cyclone FPGA is used for signal interfacing, filtering and colour processing to enhance image quality. A Cypress USB 2.0 interface chip is employed to isochronously transfer video data up to a maximum rate of 23.04 MBytes per second to the PC. A detailed design and video image results are presented and discussed; however the camera will need repackaging and an approval for medical application by medical specialists and concerned bodies before releasing it as full-fledged product. AFRIKAANSE OPSOMMING: Primêre gesondheidssorg telemedisyne dienste moet hoëkwaliteit televisiebeelde van hul pasiënte verkry deur van telekommunikasienetwerke gebruik te maak. Die doel van hierdie tesis is om die toepassing van n meerdoelige mediese kamera te ondersoek as n alternatief tot duur, komplekse CCD-gebaseerde kameras wat huidiglik gebruik word. Die ontwerp is gebaseer op n hoëkwaliteit CMOS beeldsensor. n Goedkoop Altera Cyclone FPGA word gebruik vir seinkoppelvlak, filtering en kleurprosessering om die kwaliteit van die beeld te verhoog. n Hoëspoed USB 2.0 poort word gebruik om die data teen die nodige spoed te versend. n Gedetailleerde ontwerp, en die beeldresultate word voorgelê en bespreek. Die kamera moet egter eers deur mediese spesialiste en relevante beheerliggame goedgekeur word voordat dit as n volledige produk vrygestel kan word. 2012-05-10T13:53:00Z 2012-05-10T13:53:00Z 2005-04 Thesis http://hdl.handle.net/10019.1/20959 en_ZA Stellenbosch University 99 leaves : ill. Stellenbosch : Stellenbosch University
collection NDLTD
language en_ZA
format Others
sources NDLTD
topic Telecommunication in medicine
Medical telematics
Theses -- Electronic engineering
Dissertations -- Electronic engineering
spellingShingle Telecommunication in medicine
Medical telematics
Theses -- Electronic engineering
Dissertations -- Electronic engineering
Behaimanot, Kibreab Ghebrehiwet
Video camera design and implementation for telemedicine application
description Thesis (MScIng)--University of Stellenbosch, 2005. === ENGLISH ABSTRACT: Primary health care telemedicine services require the acquisition and transmission of patient data including high quality still and video images via telecommunication networks. The objective of this thesis is to investigate the implementation of a generalpurpose medical camera as an alternative to the complex and costly CCD based cameras generally in use at present. The design is based on FillFactory’s SXGA (1280 ×1024) CMOS image sensor. A low-cost Altera Cyclone FPGA is used for signal interfacing, filtering and colour processing to enhance image quality. A Cypress USB 2.0 interface chip is employed to isochronously transfer video data up to a maximum rate of 23.04 MBytes per second to the PC. A detailed design and video image results are presented and discussed; however the camera will need repackaging and an approval for medical application by medical specialists and concerned bodies before releasing it as full-fledged product. === AFRIKAANSE OPSOMMING: Primêre gesondheidssorg telemedisyne dienste moet hoëkwaliteit televisiebeelde van hul pasiënte verkry deur van telekommunikasienetwerke gebruik te maak. Die doel van hierdie tesis is om die toepassing van n meerdoelige mediese kamera te ondersoek as n alternatief tot duur, komplekse CCD-gebaseerde kameras wat huidiglik gebruik word. Die ontwerp is gebaseer op n hoëkwaliteit CMOS beeldsensor. n Goedkoop Altera Cyclone FPGA word gebruik vir seinkoppelvlak, filtering en kleurprosessering om die kwaliteit van die beeld te verhoog. n Hoëspoed USB 2.0 poort word gebruik om die data teen die nodige spoed te versend. n Gedetailleerde ontwerp, en die beeldresultate word voorgelê en bespreek. Die kamera moet egter eers deur mediese spesialiste en relevante beheerliggame goedgekeur word voordat dit as n volledige produk vrygestel kan word.
author2 Blanckenberg, M. M.
author_facet Blanckenberg, M. M.
Behaimanot, Kibreab Ghebrehiwet
author Behaimanot, Kibreab Ghebrehiwet
author_sort Behaimanot, Kibreab Ghebrehiwet
title Video camera design and implementation for telemedicine application
title_short Video camera design and implementation for telemedicine application
title_full Video camera design and implementation for telemedicine application
title_fullStr Video camera design and implementation for telemedicine application
title_full_unstemmed Video camera design and implementation for telemedicine application
title_sort video camera design and implementation for telemedicine application
publisher Stellenbosch : Stellenbosch University
publishDate 2012
url http://hdl.handle.net/10019.1/20959
work_keys_str_mv AT behaimanotkibreabghebrehiwet videocameradesignandimplementationfortelemedicineapplication
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