An overview of artificial intelligence based applications for assisting digital data acquisition and implant planning procedures

Author:

Revilla‐León Marta123ORCID,Gómez‐Polo Miguel45,Sailer Irena6,Kois John C.789,Rokhshad Rata10

Affiliation:

1. Department of Restorative Dentistry, School of Dentistry University of Washington Seattle Washington USA

2. Research and Digital Dentistry Kois Center Seattle Washington USA

3. Department of Prosthodontics, School of Dental Medicine Tufts University Boston Massachusetts USA

4. Department of Conservative Dentistry and Prosthodontics Complutense University of Madrid Madrid Spain

5. Advanced in Implant‐Prosthodontics, School of Dentistry Complutense University of Madrid Madrid Spain

6. Fixed Prosthodontics and Biomaterials University Clinic of Dental Medicine, University of Geneva Geneva Switzerland

7. Kois Center Seattle Washington USA

8. Department of Restorative Dentistry University of Washington Seattle Washington USA

9. Private Practice Seattle Washington USA

10. Topic Group Dental Diagnostics and Digital Dentistry ITU/WHO Focus Group AI on Health Berlin Germany

Abstract

AbstractObjectivesTo provide an overview of the current artificial intelligence (AI) based applications for assisting digital data acquisition and implant planning procedures.OverviewA review of the main AI‐based applications integrated into digital data acquisitions technologies (facial scanners (FS), intraoral scanners (IOSs), cone beam computed tomography (CBCT) devices, and jaw trackers) and computer‐aided static implant planning programs are provided.ConclusionsThe main AI‐based application integrated in some FS's programs involves the automatic alignment of facial and intraoral scans for virtual patient integration. The AI‐based applications integrated into IOSs programs include scan cleaning, assist scanning, and automatic alignment between the implant scan body with its corresponding CAD object while scanning. The more frequently AI‐based applications integrated into the programs of CBCT units involve positioning assistant, noise and artifacts reduction, structures identification and segmentation, airway analysis, and alignment of facial, intraoral, and CBCT scans. Some computer‐aided static implant planning programs include patient's digital files, identification, labeling, and segmentation of anatomical structures, mandibular nerve tracing, automatic implant placement, and surgical implant guide design.

Publisher

Wiley

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