The crystallinity of human deciduous teeth in hypophosphataemic vitamin D-resistant rickets
Author:
Publisher
Elsevier BV
Subject
Cell Biology,General Dentistry,General Medicine,Otorhinolaryngology
Reference16 articles.
1. Structural deformities of deciduous teeth in patients with hypophosphatemic vitamin D-resistant rickets;Abe;Oral Surg.,1988
2. Hereditary hypophosphatemia (vitamin D-resistant rickets) presenting primary dental manifestations;Archard;Oral Surg.,1966
3. HPO42− content in enamel and artificial carious lesions;Arends;Calc. Tissue Res.,1975
4. Effect of carbonate and biological macromolecules on formation and properties of hydroxyapatite;Blumenthal;Calc. Tissue Res.,1975
5. Infrared spectroscopy and magnesium content of bone mineral in osteoporotic women;Cohen;Isr. J. med. Sci.,1981
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1. CYP4A22 loss-of-function causes a new type of vitamin D–dependent rickets (VDDR1C);Journal of Bone and Mineral Research;2024-06-07
2. Dental Manifestations and Oral Management of X-Linked Hypophosphatemia;Endocrines;2022-10-21
3. Periapical and endodontic status of permanent teeth in patients with hypophosphatemic rickets;Journal of Oral Rehabilitation;2011-09-08
4. The PHEX Transgene Corrects Mineralization Defects in 9-Month-Old Hypophosphatemic Mice;Calcified Tissue International;2008-12-12
5. Characterization of Interglobular Dentin and Tomes' Granular Layer in Dog Dentin Using Electron Probe Microanalysis in Comparison with Predentin;Calcified Tissue International;2001-03
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