Real time imaging system for craniofacial reconstruction: from geomatic to medical applications
For medical purposes (such as craniofacial (reconstruction), human faces and skulls (i.e. soft and hard tissues) need to be modeled and measured accurately. In Malaysia, many surgeons are still using the laborious traditional contact method (for example, calipers) for measuring anthropometric landma...
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Format: | Conference or Workshop Item |
Language: | English |
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2005
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Online Access: | http://eprints.utm.my/1326/1/Paper053halim.pdf |
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author | Setan, Halim Majid, Zulkepli Chong, Albert K. Ahmad, Anuar |
author_facet | Setan, Halim Majid, Zulkepli Chong, Albert K. Ahmad, Anuar |
author_sort | Setan, Halim |
collection | ePrints |
description | For medical purposes (such as craniofacial (reconstruction), human faces and skulls (i.e. soft and hard tissues) need to be modeled and measured accurately. In Malaysia, many surgeons are still using the laborious traditional contact method (for example, calipers) for measuring anthropometric landmarks on human face. Consequently, a multi-disciplinary Prioritised Research (under IRPA) is established between Universiti Teknologi Malaysia (UTM), Standards & Industrial Research Institute Malaysia (SIRIM), and Universiti Sains Malaysia (USM). The research focuses on the development of surgical planning system for craniofacial reconstruction, for both the soft and hard tissues. The craniofacial reconstruction requires the following: imaging and measurement (non-contact, precise, rapid), 3D models (digital and physical), database, and surgical planner. This paper discusses the research works undertaken by UTM on the development of the imaging system (close range, non-contact, and real time) and information system (i.e. database) for craniofacial. The real time imaging system combines the laser scanning and photogrammetric techniques for acquiring high-resolution 3D models of craniofacial soft tissue. The information system integrates various inputs (soft tissue from laser scan and photogrammetry, hard tissue from CT-scan, measurement, patient’s information, etc) for managing and visualizing the craniofacial data. Some actual results are shown to highlight the developed approach.
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first_indexed | 2024-03-05T17:56:21Z |
format | Conference or Workshop Item |
id | utm.eprints-1326 |
institution | Universiti Teknologi Malaysia - ePrints |
language | English |
last_indexed | 2024-03-05T17:56:21Z |
publishDate | 2005 |
record_format | dspace |
spelling | utm.eprints-13262017-08-29T07:23:54Z http://eprints.utm.my/1326/ Real time imaging system for craniofacial reconstruction: from geomatic to medical applications Setan, Halim Majid, Zulkepli Chong, Albert K. Ahmad, Anuar TA Engineering (General). Civil engineering (General) For medical purposes (such as craniofacial (reconstruction), human faces and skulls (i.e. soft and hard tissues) need to be modeled and measured accurately. In Malaysia, many surgeons are still using the laborious traditional contact method (for example, calipers) for measuring anthropometric landmarks on human face. Consequently, a multi-disciplinary Prioritised Research (under IRPA) is established between Universiti Teknologi Malaysia (UTM), Standards & Industrial Research Institute Malaysia (SIRIM), and Universiti Sains Malaysia (USM). The research focuses on the development of surgical planning system for craniofacial reconstruction, for both the soft and hard tissues. The craniofacial reconstruction requires the following: imaging and measurement (non-contact, precise, rapid), 3D models (digital and physical), database, and surgical planner. This paper discusses the research works undertaken by UTM on the development of the imaging system (close range, non-contact, and real time) and information system (i.e. database) for craniofacial. The real time imaging system combines the laser scanning and photogrammetric techniques for acquiring high-resolution 3D models of craniofacial soft tissue. The information system integrates various inputs (soft tissue from laser scan and photogrammetry, hard tissue from CT-scan, measurement, patient’s information, etc) for managing and visualizing the craniofacial data. Some actual results are shown to highlight the developed approach. 2005-09 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/1326/1/Paper053halim.pdf Setan, Halim and Majid, Zulkepli and Chong, Albert K. and Ahmad, Anuar (2005) Real time imaging system for craniofacial reconstruction: from geomatic to medical applications. In: International Symposium & Exhibition on Geoinformation 2005 Geospatial Solutions for Managing the Borderless World,, 27 - 29 September 2005, Pulau Pinang. http://www.civil.eng.usm.my/isg2005/home.shtml |
spellingShingle | TA Engineering (General). Civil engineering (General) Setan, Halim Majid, Zulkepli Chong, Albert K. Ahmad, Anuar Real time imaging system for craniofacial reconstruction: from geomatic to medical applications |
title | Real time imaging system for craniofacial reconstruction:
from geomatic to medical applications
|
title_full | Real time imaging system for craniofacial reconstruction:
from geomatic to medical applications
|
title_fullStr | Real time imaging system for craniofacial reconstruction:
from geomatic to medical applications
|
title_full_unstemmed | Real time imaging system for craniofacial reconstruction:
from geomatic to medical applications
|
title_short | Real time imaging system for craniofacial reconstruction:
from geomatic to medical applications
|
title_sort | real time imaging system for craniofacial reconstruction from geomatic to medical applications |
topic | TA Engineering (General). Civil engineering (General) |
url | http://eprints.utm.my/1326/1/Paper053halim.pdf |
work_keys_str_mv | AT setanhalim realtimeimagingsystemforcraniofacialreconstructionfromgeomatictomedicalapplications AT majidzulkepli realtimeimagingsystemforcraniofacialreconstructionfromgeomatictomedicalapplications AT chongalbertk realtimeimagingsystemforcraniofacialreconstructionfromgeomatictomedicalapplications AT ahmadanuar realtimeimagingsystemforcraniofacialreconstructionfromgeomatictomedicalapplications |