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The strength of a calcified tissue depends in part on the molecular structure and organization of its constituent mineral crystals in their organic matrix

Bone · 1995 · Vol. 16(5) · pp. 533–544
William J. Landis
Connective tissue disorders researchDermatological and Skeletal DisordersBone and Dental Protein StudiesMineralMatrix (chemical analysis)BrittlenessCalciphylaxisChemistryOrganic componentCrystal (programming language)Materials scienceBone tissueCrystallography

MeSH terms

AnimalsBone MatrixCalcinosisCalciphylaxisCollagenDermatomyositisFemaleHumansHydroxyapatitesMice, Mutant StrainsMicroscopy, ElectronModels, MolecularOsteogenesis ImperfectaSkinTendons
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References
The reconstruction of a three-dimensional structure from projections and its application to electron microscopy
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1970 · 965 citations
Genetic heterogeneity in osteogenesis imperfecta.
Journal of Medical Genetics · 1979 · 2,224 citations
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The strength of a calcified tissue depends in part on the molecular structure and organization of its constituent mineral crystals in their organic matrix · Scinovex