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Exploring the Validity of an Optoelectronic Integrated Cone Beam Computed Tomography Jaw Tracking System

Jaw motion tracking functionalities of cone beam computed tomography (CBCT)-scanners can visualize, record, and analyze movements of the mandible. In this explorative study, the validity of the 4D-Jaw Motion module (4D-JM) of the ProMax 3D Mid CBCT scanner (Planmeca, Helsinki, Finland) was tested in...

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Autores principales: van der Helm, Hayo C., Dieters, Arjan J. A., Dijkstra, Pieter U., van der Meer, Wicher J., Kuijpers-Jagtman, Anne Marie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10299139/
https://www.ncbi.nlm.nih.gov/pubmed/37373838
http://dx.doi.org/10.3390/jcm12124145
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author van der Helm, Hayo C.
Dieters, Arjan J. A.
Dijkstra, Pieter U.
van der Meer, Wicher J.
Kuijpers-Jagtman, Anne Marie
author_facet van der Helm, Hayo C.
Dieters, Arjan J. A.
Dijkstra, Pieter U.
van der Meer, Wicher J.
Kuijpers-Jagtman, Anne Marie
author_sort van der Helm, Hayo C.
collection PubMed
description Jaw motion tracking functionalities of cone beam computed tomography (CBCT)-scanners can visualize, record, and analyze movements of the mandible. In this explorative study, the validity of the 4D-Jaw Motion module (4D-JM) of the ProMax 3D Mid CBCT scanner (Planmeca, Helsinki, Finland) was tested in vitro. The validity of the 4D-JM was accepted if values differed less than 0.6 mm (three voxels sizes) from the gold standard. Three dry human skulls were used. CBCT scans, the gold standard, were taken in eight jaw positions and exported as three-dimensional (3D) models. Individualized 3D-printed dental wafers ensured the correct positioning of the mandible. Jaw positions were recorded with the 4D-JM tracking device and exported as 3D models. The coordinates of six reference points for both superimposed 3D models were obtained. The differences in the x, y and z-axis and the corresponding vector differences between gold standard 3D models and 4D-JM models were calculated. For the mandible 10% and for the maxilla 90% of the vector differences fell within 0.6 mm of the gold standard. With an increasing vertical jaw opening, larger differences between the gold standard and the 4D-JM 3D models were found. The smallest differences of the mandible were observed on the x axis. In this study, the 4D-JM validity was not acceptable by the authors’ predefined standards.
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spelling pubmed-102991392023-06-28 Exploring the Validity of an Optoelectronic Integrated Cone Beam Computed Tomography Jaw Tracking System van der Helm, Hayo C. Dieters, Arjan J. A. Dijkstra, Pieter U. van der Meer, Wicher J. Kuijpers-Jagtman, Anne Marie J Clin Med Article Jaw motion tracking functionalities of cone beam computed tomography (CBCT)-scanners can visualize, record, and analyze movements of the mandible. In this explorative study, the validity of the 4D-Jaw Motion module (4D-JM) of the ProMax 3D Mid CBCT scanner (Planmeca, Helsinki, Finland) was tested in vitro. The validity of the 4D-JM was accepted if values differed less than 0.6 mm (three voxels sizes) from the gold standard. Three dry human skulls were used. CBCT scans, the gold standard, were taken in eight jaw positions and exported as three-dimensional (3D) models. Individualized 3D-printed dental wafers ensured the correct positioning of the mandible. Jaw positions were recorded with the 4D-JM tracking device and exported as 3D models. The coordinates of six reference points for both superimposed 3D models were obtained. The differences in the x, y and z-axis and the corresponding vector differences between gold standard 3D models and 4D-JM models were calculated. For the mandible 10% and for the maxilla 90% of the vector differences fell within 0.6 mm of the gold standard. With an increasing vertical jaw opening, larger differences between the gold standard and the 4D-JM 3D models were found. The smallest differences of the mandible were observed on the x axis. In this study, the 4D-JM validity was not acceptable by the authors’ predefined standards. MDPI 2023-06-20 /pmc/articles/PMC10299139/ /pubmed/37373838 http://dx.doi.org/10.3390/jcm12124145 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
van der Helm, Hayo C.
Dieters, Arjan J. A.
Dijkstra, Pieter U.
van der Meer, Wicher J.
Kuijpers-Jagtman, Anne Marie
Exploring the Validity of an Optoelectronic Integrated Cone Beam Computed Tomography Jaw Tracking System
title Exploring the Validity of an Optoelectronic Integrated Cone Beam Computed Tomography Jaw Tracking System
title_full Exploring the Validity of an Optoelectronic Integrated Cone Beam Computed Tomography Jaw Tracking System
title_fullStr Exploring the Validity of an Optoelectronic Integrated Cone Beam Computed Tomography Jaw Tracking System
title_full_unstemmed Exploring the Validity of an Optoelectronic Integrated Cone Beam Computed Tomography Jaw Tracking System
title_short Exploring the Validity of an Optoelectronic Integrated Cone Beam Computed Tomography Jaw Tracking System
title_sort exploring the validity of an optoelectronic integrated cone beam computed tomography jaw tracking system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10299139/
https://www.ncbi.nlm.nih.gov/pubmed/37373838
http://dx.doi.org/10.3390/jcm12124145
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