Spatial Configuration-Net Aided Spheno-Occipital Synchondrosis Ossification and Staging in Orthodontics

Aim or Purpose: To stage spheno-occipital synchondrosis (SOS) ossification using Cone Beam CT(CBCT) first, followed by the application of AI-based modified Convolutional Neural Networks for the automation of tasks. Materials and Methods: We used IRB exempted protocol (#830154) to analyze CBCTs obtai...

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Main Authors: Prof Muralidhar Mupparapu, Prof Venkat Ramana Reddy Baddam, Mr Muhammad Shammaa, Mr Anwar Radwan, Mr. Khartik Uppalapati, Miss Maanya Chitrapu
Format: Article
Language:English
Published: Elsevier 2023-09-01
Series:International Dental Journal
Online Access:http://www.sciencedirect.com/science/article/pii/S002065392300850X
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author Prof Muralidhar Mupparapu
Prof Venkat Ramana Reddy Baddam
Mr Muhammad Shammaa
Mr Anwar Radwan
Mr. Khartik Uppalapati
Miss Maanya Chitrapu
author_facet Prof Muralidhar Mupparapu
Prof Venkat Ramana Reddy Baddam
Mr Muhammad Shammaa
Mr Anwar Radwan
Mr. Khartik Uppalapati
Miss Maanya Chitrapu
author_sort Prof Muralidhar Mupparapu
collection DOAJ
description Aim or Purpose: To stage spheno-occipital synchondrosis (SOS) ossification using Cone Beam CT(CBCT) first, followed by the application of AI-based modified Convolutional Neural Networks for the automation of tasks. Materials and Methods: We used IRB exempted protocol (#830154) to analyze CBCTs obtained for 69 male and 67 female patients between the ages 5 and 25 using Osirix® and ITK Snap® software. Mid-sagittal sections of maxillofacial CBCT were obtained in order to visualize the SOS. Images were labeled according to chronological age in years and months and sorted based on gender. Spatial Configuration Net (SCN) was used to make landmark predictions. Using multiple hand-staged images of the SOS, the Euclidean pixel-wise distance between landmarks for a given stage was calculated and normalized. A support Vector Machine (SVM) algorithm was used to predict the stage of SOS ossification. Results: The SVM-classified SOS stages were compared with human classifications to see the level of accuracy using the Sorensen-DICE index. SOS ossification started around 9.3 years in males and 8.7 years in females, and completely fused by the age of 17.8 for males and 14.9 for females. Conclusions: SOS is a stable skeletal landmark and using our novel staging system proposed here, accurate determination of the skeletal age of a patient is possible. Manual identification of the ossification at SOS may lead to errors in age estimation, but artificial intelligence-based automation might be a useful clinical tool for orthodontists in the estimation of skeletal age.
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spelling doaj.art-bbf68198bdeb4d4bbfea965a5a6396b32023-09-24T05:13:27ZengElsevierInternational Dental Journal0020-65392023-09-0173S49S50Spatial Configuration-Net Aided Spheno-Occipital Synchondrosis Ossification and Staging in OrthodonticsProf Muralidhar Mupparapu0Prof Venkat Ramana Reddy Baddam1Mr Muhammad Shammaa2Mr Anwar Radwan3Mr. Khartik Uppalapati4Miss Maanya Chitrapu5University Of Pennsylvania School of Dental Medicine, Philadelphia, United StatesSibar Institute of Dental Sciences, Guntur, India; Corresponding author.University Of Pennsylvania School of Dental Medicine, Philadelphia, United StatesUniversity Of Pennsylvania School of Dental Medicine, Philadelphia, United StatesUniversity Of Pennsylvania School of Dental Medicine, Philadelphia, United StatesUniversity Of Pennsylvania School of Dental Medicine, Philadelphia, United StatesAim or Purpose: To stage spheno-occipital synchondrosis (SOS) ossification using Cone Beam CT(CBCT) first, followed by the application of AI-based modified Convolutional Neural Networks for the automation of tasks. Materials and Methods: We used IRB exempted protocol (#830154) to analyze CBCTs obtained for 69 male and 67 female patients between the ages 5 and 25 using Osirix® and ITK Snap® software. Mid-sagittal sections of maxillofacial CBCT were obtained in order to visualize the SOS. Images were labeled according to chronological age in years and months and sorted based on gender. Spatial Configuration Net (SCN) was used to make landmark predictions. Using multiple hand-staged images of the SOS, the Euclidean pixel-wise distance between landmarks for a given stage was calculated and normalized. A support Vector Machine (SVM) algorithm was used to predict the stage of SOS ossification. Results: The SVM-classified SOS stages were compared with human classifications to see the level of accuracy using the Sorensen-DICE index. SOS ossification started around 9.3 years in males and 8.7 years in females, and completely fused by the age of 17.8 for males and 14.9 for females. Conclusions: SOS is a stable skeletal landmark and using our novel staging system proposed here, accurate determination of the skeletal age of a patient is possible. Manual identification of the ossification at SOS may lead to errors in age estimation, but artificial intelligence-based automation might be a useful clinical tool for orthodontists in the estimation of skeletal age.http://www.sciencedirect.com/science/article/pii/S002065392300850X
spellingShingle Prof Muralidhar Mupparapu
Prof Venkat Ramana Reddy Baddam
Mr Muhammad Shammaa
Mr Anwar Radwan
Mr. Khartik Uppalapati
Miss Maanya Chitrapu
Spatial Configuration-Net Aided Spheno-Occipital Synchondrosis Ossification and Staging in Orthodontics
International Dental Journal
title Spatial Configuration-Net Aided Spheno-Occipital Synchondrosis Ossification and Staging in Orthodontics
title_full Spatial Configuration-Net Aided Spheno-Occipital Synchondrosis Ossification and Staging in Orthodontics
title_fullStr Spatial Configuration-Net Aided Spheno-Occipital Synchondrosis Ossification and Staging in Orthodontics
title_full_unstemmed Spatial Configuration-Net Aided Spheno-Occipital Synchondrosis Ossification and Staging in Orthodontics
title_short Spatial Configuration-Net Aided Spheno-Occipital Synchondrosis Ossification and Staging in Orthodontics
title_sort spatial configuration net aided spheno occipital synchondrosis ossification and staging in orthodontics
url http://www.sciencedirect.com/science/article/pii/S002065392300850X
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