Determining the Accuracy of the Mandibular Canal Region in 3D Biomodels Fabricated from CBCT Scanned Data: A Cadaveric Study
Objective: To validate the accuracy of the mandibular canal region in 3D biomodel produced by using data obtained from Cone-Beam Computed Tomography (CBCT) of cadaveric mandibles. Methods: Six hemi-mandible samples were scanned using the i-CAT CBCT system. The scanned data was transferred to the Osi...
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Bentham Science Publishers
2019
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author | Abd Fattah, Syed Yusoff Alzawawi Syed Hariri, Firdaus Nambiar, Phrabhakaran Abu Bakar, Mohd Zulkiflee Rahman, Zainal Ariff Abdul |
author_facet | Abd Fattah, Syed Yusoff Alzawawi Syed Hariri, Firdaus Nambiar, Phrabhakaran Abu Bakar, Mohd Zulkiflee Rahman, Zainal Ariff Abdul |
author_sort | Abd Fattah, Syed Yusoff Alzawawi Syed |
collection | UM |
description | Objective: To validate the accuracy of the mandibular canal region in 3D biomodel produced by using data obtained from Cone-Beam Computed Tomography (CBCT) of cadaveric mandibles. Methods: Six hemi-mandible samples were scanned using the i-CAT CBCT system. The scanned data was transferred to the OsiriX software for measurement protocol and subsequently into Mimics software to fabricate customized cutting jigs and 3D biomodels based on rapid prototyping technology. The hemi-mandibles were segmented into 5 dentoalveolar blocks using the customized jigs. Digital calliper was used to measure six distances surrounding the mandibular canal on each section. The same distances were measured on the corresponding cross-sectional OsiriX images and the 3D biomodels of each dentoalveolar block. Results: Statistically no significant difference was found when measurements from OsiriX images and 3D biomodels were compared to the “gold standard” -direct digital calliper measurement of the cadaveric dentoalveolar blocks. Moreover, the mean value difference of the various measurements between the different study components was also minimal. Conclusion: Various distances surrounding the mandibular canal from 3D biomodels produced from the CBCT scanned data was similar to that of direct digital calliper measurements of the cadaveric specimens. © 2019 Bentham Science Publishers. |
first_indexed | 2024-03-06T06:02:13Z |
format | Article |
id | um.eprints-24244 |
institution | Universiti Malaya |
last_indexed | 2024-03-06T06:02:13Z |
publishDate | 2019 |
publisher | Bentham Science Publishers |
record_format | dspace |
spelling | um.eprints-242442020-04-30T05:23:30Z http://eprints.um.edu.my/24244/ Determining the Accuracy of the Mandibular Canal Region in 3D Biomodels Fabricated from CBCT Scanned Data: A Cadaveric Study Abd Fattah, Syed Yusoff Alzawawi Syed Hariri, Firdaus Nambiar, Phrabhakaran Abu Bakar, Mohd Zulkiflee Rahman, Zainal Ariff Abdul R Medicine RK Dentistry Objective: To validate the accuracy of the mandibular canal region in 3D biomodel produced by using data obtained from Cone-Beam Computed Tomography (CBCT) of cadaveric mandibles. Methods: Six hemi-mandible samples were scanned using the i-CAT CBCT system. The scanned data was transferred to the OsiriX software for measurement protocol and subsequently into Mimics software to fabricate customized cutting jigs and 3D biomodels based on rapid prototyping technology. The hemi-mandibles were segmented into 5 dentoalveolar blocks using the customized jigs. Digital calliper was used to measure six distances surrounding the mandibular canal on each section. The same distances were measured on the corresponding cross-sectional OsiriX images and the 3D biomodels of each dentoalveolar block. Results: Statistically no significant difference was found when measurements from OsiriX images and 3D biomodels were compared to the “gold standard” -direct digital calliper measurement of the cadaveric dentoalveolar blocks. Moreover, the mean value difference of the various measurements between the different study components was also minimal. Conclusion: Various distances surrounding the mandibular canal from 3D biomodels produced from the CBCT scanned data was similar to that of direct digital calliper measurements of the cadaveric specimens. © 2019 Bentham Science Publishers. Bentham Science Publishers 2019 Article PeerReviewed Abd Fattah, Syed Yusoff Alzawawi Syed and Hariri, Firdaus and Nambiar, Phrabhakaran and Abu Bakar, Mohd Zulkiflee and Rahman, Zainal Ariff Abdul (2019) Determining the Accuracy of the Mandibular Canal Region in 3D Biomodels Fabricated from CBCT Scanned Data: A Cadaveric Study. Current Medical Imaging, 15 (7). pp. 645-653. ISSN 1573-4056, DOI https://doi.org/10.2174/1573405614666181012144745 <https://doi.org/10.2174/1573405614666181012144745>. https://doi.org/10.2174/1573405614666181012144745 doi:10.2174/1573405614666181012144745 |
spellingShingle | R Medicine RK Dentistry Abd Fattah, Syed Yusoff Alzawawi Syed Hariri, Firdaus Nambiar, Phrabhakaran Abu Bakar, Mohd Zulkiflee Rahman, Zainal Ariff Abdul Determining the Accuracy of the Mandibular Canal Region in 3D Biomodels Fabricated from CBCT Scanned Data: A Cadaveric Study |
title | Determining the Accuracy of the Mandibular Canal Region in 3D Biomodels Fabricated from CBCT Scanned Data: A Cadaveric Study |
title_full | Determining the Accuracy of the Mandibular Canal Region in 3D Biomodels Fabricated from CBCT Scanned Data: A Cadaveric Study |
title_fullStr | Determining the Accuracy of the Mandibular Canal Region in 3D Biomodels Fabricated from CBCT Scanned Data: A Cadaveric Study |
title_full_unstemmed | Determining the Accuracy of the Mandibular Canal Region in 3D Biomodels Fabricated from CBCT Scanned Data: A Cadaveric Study |
title_short | Determining the Accuracy of the Mandibular Canal Region in 3D Biomodels Fabricated from CBCT Scanned Data: A Cadaveric Study |
title_sort | determining the accuracy of the mandibular canal region in 3d biomodels fabricated from cbct scanned data a cadaveric study |
topic | R Medicine RK Dentistry |
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