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Frontiers in Three-Dimensional Surface Imaging Systems for 3D Face Acquisition in Craniofacial Research and Practice: An Updated Literature Review. | LitMetric

AI Article Synopsis

  • The text discusses the importance of digitalizing dental care to enhance clinical outcomes, focusing on 3D face acquisition technologies that are essential for craniofacial research and practice.* -
  • It highlights the challenges clinicians face when selecting a suitable 3D imaging system due to differences in accuracy, reliability, and portability.* -
  • The review synthesizes findings from 71 articles on various 3D imaging technologies, providing insights to help clinicians choose the best systems and suggests that future advancements will lead to more accessible and effective devices.*

Article Abstract

Digitalizing all aspects of dental care is a contemporary approach to ensuring the best possible clinical outcomes. Ongoing advancements in 3D face acquisition have been driven by continuous research on craniofacial structures and treatment effects. An array of 3D surface-imaging systems are currently available for generating photorealistic 3D facial images. However, choosing a purpose-specific system is challenging for clinicians due to variations in accuracy, reliability, resolution, and portability. Therefore, this review aims to provide clinicians and researchers with an overview of currently used or potential 3D surface imaging technologies and systems for 3D face acquisition in craniofacial research and daily practice. Through a comprehensive literature search, 71 articles meeting the inclusion criteria were included in the qualitative analysis, investigating the hardware, software, and operational aspects of these systems. The review offers updated information on 3D surface imaging technologies and systems to guide clinicians in selecting an optimal 3D face acquisition system. While some of these systems have already been implemented in clinical settings, others hold promise. Furthermore, driven by technological advances, novel devices will become cost-effective and portable, and will also enable accurate quantitative assessments, rapid treatment simulations, and improved outcomes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10888365PMC
http://dx.doi.org/10.3390/diagnostics14040423DOI Listing

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