Robotics & Machine Learning Daily News2024,Issue(Feb.28) :5-6.DOI:10.1016/j.jdent.2023.104768

Findings from Marquette University Provides New Data about Artificial Intelligence (Detection of Dental Restorations Using No-code Artificial Intelligence)

Robotics & Machine Learning Daily News2024,Issue(Feb.28) :5-6.DOI:10.1016/j.jdent.2023.104768

Findings from Marquette University Provides New Data about Artificial Intelligence (Detection of Dental Restorations Using No-code Artificial Intelligence)

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Abstract

Investigators publish new report on Artificial Intelligence. According to news reporting originating in Milwaukee, Wisconsin, by NewsRx journalists, research stated, "The purpose of this study was to utilize a no-code computer vision platform to develop, train, and evaluate a model specifically designed for segmenting dental restorations on panoramic radiographs. One hundred anonymized panoramic radiographs were selected for this study." Financial support for this research came from Marquette University Participating Faculty Research Award [FY2022-2023]. The news reporters obtained a quote from the research from Marquette University, "Accurate labeling of dental restorations was performed by calibrated dental faculty and students, with subsequent final review by an oral radiologist. The radiographs were automatically split within the platform into training (70 %), development (20 %), and testing (10 %) subgroups. The model was trained for 40 epochs using a medium model size. Data augmentation techniques available within the platform, namely horizontal and vertical flip, were utilized on the training set to improve the model's predictions. Post-training, the model was tested for independent predictions. The model's diagnostic validity was assessed through the calculation of sensitivity, specificity, accuracy, precision, F1-score by pixel and by tooth, and by ROC-AUC. A total of 1,108 restorations were labeled on 960 teeth. At a confidence threshold of 0.95, the model achieved 86.64 % sensitivity, 99.78 % specificity, 99.63 % accuracy, 82.4 % precision and an F1-score of 0.844 by pixel. The model achieved 98.34 % sensitivity, 98.13 % specificity, 98.21 % accuracy, 98.85 % precision and an F1-score of 0.98 by tooth. ROC curve showed high performance with an AUC of 0.978. The no-code computer vision platform used in this study accurately detected dental restorations on panoramic radiographs. However, further research and validation are required to evaluate the performance of no-code platforms on larger and more diverse datasets, as well as for other detection and segmentation tasks."

Key words

Milwaukee/Wisconsin/United States/North and Central America/Artificial Intelligence/Dentistry/Emerging Technologies/Health and Medicine/Machine Learning/Marquette University

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出版年

2024
Robotics & Machine Learning Daily News

Robotics & Machine Learning Daily News

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