Literature DB >> 33778330

Guidelines for Micro-Computed Tomography Analysis of Rodent Dentoalveolar Tissues.

Michael B Chavez1, Emily Y Chu2, Vardit Kram3, Luis F de Castro3, Martha J Somerman2, Brian L Foster1.   

Abstract

Micro-computed tomography (μCT) has become essential for analysis of mineralized as well as nonmineralized tissues and is therefore widely applicable in the life sciences. However, lack of standardized approaches and protocols for scanning, analyzing, and reporting data often makes it difficult to understand exactly how analyses were performed, how to interpret results, and if findings can be broadly compared with other models and studies. This problem is compounded in analysis of the dentoalveolar complex by the presence of four distinct mineralized tissues: enamel, dentin, cementum, and alveolar bone. Furthermore, these hard tissues interface with adjacent soft tissues, the dental pulp and periodontal ligament (PDL), making for a complex organ. Drawing on others' and our own experience analyzing rodent dentoalveolar tissues by μCT, we introduce techniques to successfully analyze dentoalveolar tissues with similar or disparate compositions, densities, and morphological characteristics. Our goal is to provide practical guidelines for μCT analysis of rodent dentoalveolar tissues, including approaches to optimize scan parameters (filters, voltage, voxel size, and integration time), reproducibly orient samples, define regions and volumes of interest, segment and subdivide tissues, interpret findings, and report methods and results. We include illustrative examples of analyses performed on genetically engineered mouse models with phenotypes in enamel, dentin, cementum, and alveolar bone. The recommendations are designed to increase transparency and reproducibility, promote best practices, and provide a basic framework to apply μCT analysis to the dentoalveolar complex that can also be extrapolated to a variety of other tissues of the body.
© 2021 The Authors. JBMR Plus published by Wiley Periodicals LLC. on behalf of American Society for Bone and Mineral Research. © 2021 The Authors. JBMR Plus published by Wiley Periodicals LLC. on behalf of American Society for Bone and Mineral Research.

Entities:  

Keywords:  BIOMINERALIZATION; BONE; DENTAL CEMENTUM; DENTAL ENAMEL; DENTIN; ODONTOGENESIS

Year:  2021        PMID: 33778330      PMCID: PMC7990153          DOI: 10.1002/jbm4.10474

Source DB:  PubMed          Journal:  JBMR Plus        ISSN: 2473-4039


  103 in total

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5.  Sclerostin antibody stimulates bone regeneration after experimental periodontitis.

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Journal:  J Bone Miner Res       Date:  2013-11       Impact factor: 6.741

6.  MMP20 Overexpression Disrupts Molar Ameloblast Polarity and Migration.

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8.  A metal artifact reduction method for a dental CT based on adaptive local thresholding and prior image generation.

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9.  Conditional Alpl Ablation Phenocopies Dental Defects of Hypophosphatasia.

Authors:  B L Foster; P Kuss; M C Yadav; T N Kolli; S Narisawa; L Lukashova; E Cory; R L Sah; M J Somerman; J L Millán
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10.  A Novel Method to Detect 3D Mandibular Changes Related to Soft-Diet Feeding.

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3.  Cementocyte alterations associated with experimentally induced cellular cementum apposition in Hyp mice.

Authors:  Elis J Lira Dos Santos; Cristiane R Salmon; Michael B Chavez; Amanda B de Almeida; Michelle H Tan; Emily Y Chu; Enilson A Sallum; Marcio Z Casati; Karina G S Ruiz; Kamila R Kantovitz; Brian L Foster; Francisco H Nociti Júnior
Journal:  J Periodontol       Date:  2021-06-09       Impact factor: 4.494

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  4 in total

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