Background: The aim of this study was to develop artificial intelligence (AI) guided framework to recognize tooth numbers in panoramic and intraoral radiographs (periapical and bitewing) without prior domain knowledge and arrange the intraoral radiographs into a full mouth series (FMS) arrangement template. This model can be integrated with different diseases diagnosis models, such as periodontitis or caries, to facilitate clinical examinations and diagnoses. Methods: The framework utilized image segmentation models to generate the masks of bone area, tooth, and cementoenamel junction (CEJ) lines from intraoral radiographs. These masks were used to detect and extract teeth bounding boxes utilizing several image analysis methods. Then, indiv...
Bite-wing radiographs are one of the most used intraoral radiography techniques in dentistry. AI is ...
OBJECTIVES: Analysis of dental radiographs is an important part of the diagnostic process in daily c...
This Special Issue is intended to lay the foundation of AI applications focusing on oral health, inc...
Background Panoramic radiography is an imaging method for displaying maxillary and mandibular teeth ...
Abstract Background Panoramic radiography is an imaging method for displaying maxillary and mandibul...
Objectives: To evaluate the diagnostic reliability of a web-based Artificial Intelligence program on...
Objective This study aimed to assess the performance of the deep learning (DL) model for automated ...
Objective: This study evaluated the use of a deep-learning approach for automated detection and numb...
panoramic X-ray is a two-dimensional (2-D) dental X-ray examination that captures the entire mouth i...
To evaluate the performance of a new artificial intelligence (AI)-driven tool for tooth detection an...
Objectives: We aimed to develop an artificial intelligence–based clinical dental decision-support sy...
Oral health issues like tooth decay affect billions of people worldwide. The early detection as well...
Objectives: To investigate the current developments of Artificial Intelligence (AI) in teeth identif...
The aim of this study was to assess the reliability of the artificial intelligence (AI) automatic ev...
ABSTRACTBackground Calculating radiographic bone loss (RBL) can be time-consuming, labor-intensive, ...
Bite-wing radiographs are one of the most used intraoral radiography techniques in dentistry. AI is ...
OBJECTIVES: Analysis of dental radiographs is an important part of the diagnostic process in daily c...
This Special Issue is intended to lay the foundation of AI applications focusing on oral health, inc...
Background Panoramic radiography is an imaging method for displaying maxillary and mandibular teeth ...
Abstract Background Panoramic radiography is an imaging method for displaying maxillary and mandibul...
Objectives: To evaluate the diagnostic reliability of a web-based Artificial Intelligence program on...
Objective This study aimed to assess the performance of the deep learning (DL) model for automated ...
Objective: This study evaluated the use of a deep-learning approach for automated detection and numb...
panoramic X-ray is a two-dimensional (2-D) dental X-ray examination that captures the entire mouth i...
To evaluate the performance of a new artificial intelligence (AI)-driven tool for tooth detection an...
Objectives: We aimed to develop an artificial intelligence–based clinical dental decision-support sy...
Oral health issues like tooth decay affect billions of people worldwide. The early detection as well...
Objectives: To investigate the current developments of Artificial Intelligence (AI) in teeth identif...
The aim of this study was to assess the reliability of the artificial intelligence (AI) automatic ev...
ABSTRACTBackground Calculating radiographic bone loss (RBL) can be time-consuming, labor-intensive, ...
Bite-wing radiographs are one of the most used intraoral radiography techniques in dentistry. AI is ...
OBJECTIVES: Analysis of dental radiographs is an important part of the diagnostic process in daily c...
This Special Issue is intended to lay the foundation of AI applications focusing on oral health, inc...