Page 57 - Read Online
P. 57
Page 18 of 21 Mu et al. Microstructures 2023;3:2023030 https://dx.doi.org/10.20517/microstructures.2023.05
110. Poole KE, Compston JE. Osteoporosis and its management. BMJ 2006;333:1251-6. DOI PubMed PMC
111. Tamimi I, Cortes ARG, Sánchez-Siles JM, et al. Composition and characteristics of trabecular bone in osteoporosis and osteoarthritis.
Bone 2020;140:115558. DOI
112. Nobakhti S, Shefelbine SJ. On the relation of bone mineral density and the elastic modulus in healthy and pathologic bone. Curr
Osteoporos Rep 2018;16:404-10. DOI PubMed
113. Shah FA. The many facets of micropetrosis - magnesium whitlockite deposition in bisphosphonate-exposed human alveolar bone
with osteolytic metastasis. Micron 2023;168:103441. DOI PubMed
114. Shah FA. Magnesium whitlockite - omnipresent in pathological mineralisation of soft tissues but not a significant inorganic
constituent of bone. Acta Biomater 2021;125:72-82. DOI
115. Meyer F, Dittmann A, Kornak U, et al. Chondrocytes from osteoarthritic and chondrocalcinosis cartilage represent different
phenotypes. Front Cell Dev Biol 2021;9:622287. DOI PubMed PMC
116. Fuerst M, Bertrand J, Lammers L, et al. Calcification of articular cartilage in human osteoarthritis. Arthritis Rheum 2009;60:2694-
703. DOI
117. Derfus BA, Kurian JB, Butler JJ, et al. The high prevalence of pathologic calcium crystals in pre-operative knees. J Rheumatol
2002;29:570-4. PubMed
118. Halverson PB, McCarty DJ. Patterns of radiographic abnormalities associated with basic calcium phosphate and calcium
pyrophosphate dihydrate crystal deposition in the knee. Ann Rheum Dis 1986;45:603-5. DOI PubMed PMC
119. Nalbant S, Martinez JA, Kitumnuaypong T, Clayburne G, Sieck M, Schumacher HR Jr. Synovial fluid features and their relations to
osteoarthritis severity: new findings from sequential studies. Osteoarthr Cartil 2003;11:50-4. Available from: https://
www.sciencedirect.com/science/article/pii/S1063458402908617 [Last accessed on 5 July 2023].
120. Rosenthal AK, Mattson E, Gohr CM, Hirschmugl CJ. Characterization of articular calcium-containing crystals by synchrotron FTIR.
Osteoarthr Cartil 2008;16:1395-402. DOI PubMed PMC
121. Yan JF, Qin WP, Xiao BC, et al. Pathological calcification in osteoarthritis: an outcome or a disease initiator? Biol Rev Camb Philos
Soc 2020;95:960-85. DOI
122. Rosenthal AK. Articular cartilage vesicles and calcium crystal deposition diseases. Curr Opin Rheumatol 2016;28:127-32. DOI
PubMed PMC
123. Scotchford CA, Vickers M, Ali SY. The isolation and characterization of magnesium whitlockite crystals from human articular
cartilage. Osteoarthr Cartil 1995;3:79-94. PubMed
124. Lee RS, Kayser MV, Ali SY. Calcium phosphate microcrystal deposition in the human intervertebral disc. J Anat 2006;208:13-9.
DOI PubMed PMC
125. Hayes CW, Conway WF. Calcium hydroxyapatite deposition disease. Radiographics 1990;10:1031-48. DOI PubMed
126. Uhthoff HK, Loehr JW. Calcific tendinopathy of the rotator cuff: pathogenesis, diagnosis, and management. J Am Acad Orthop Surg
1997;5:183-91. DOI PubMed
127. Landis WJ. A study of calcification in the leg tendons from the domestic turkey. J Ultrastruct Mol Struct Res 1986;94:217-38. DOI
128. Oliva F, Via AG, Maffulli N. Physiopathology of intratendinous calcific deposition. BMC Med 2012;10:95. DOI PubMed PMC
129. McCarty DJ Jr, Gatter RA. Recurrent acute inflammation associated with focal apatite crystal deposition. Arthritis Rheum
1966;9:804-19. DOI PubMed
130. Gärtner J, Simons B. Analysis of calcific deposits in calcifying tendinitis. Clin Orthop Relat Res 1990;254:111-20. PubMed
131. Riley GP, Harrall RL, Constant CR, Cawston TE, Hazleman BL. Prevalence and possible pathological significance of calcium
phosphate salt accumulation in tendon matrix degeneration. Ann Rheum Dis 1996;55:109-15. DOI PubMed PMC
132. Penel G, Leroy G, Rey C, Bres E. MicroRaman spectral study of the PO and CO vibrational modes in synthetic and biological
4
3
apatites. Calcif Tissue Int 1998;63:475-81. DOI PubMed
133. Barron MJ, McDonnell ST, Mackie I, Dixon MJ. Hereditary dentine disorders: dentinogenesis imperfecta and dentine dysplasia.
Orphanet J Rare Dis 2008;3:31. DOI PubMed PMC
134. Jin Y, Yip HK. Supragingival calculus: formation and control. Crit Rev Oral Biol Med 2002;13:426-41. DOI PubMed
135. White DJ. Dental calculus: recent insights into occurrence, formation, prevention, removal and oral health effects of supragingival
and subgingival deposits. Eur J Oral Sci 1997;105:508-22. DOI PubMed
136. Sakae T, Yamamoto H, Hirai G. Mode of occurrence of brushite and whitlockite in a sialolith. J Dent Res 1981;60:842-4. DOI
137. Anneroth G, Eneroth CM, Isacsson G. Crystalline structure of salivary calculi. a microradiographic and microdiffractometric study. J
Oral Pathol 1975;4:266-72. DOI PubMed
138. Burnstein LS, Boskey AL, Tannenbaum PJ, Posner AS, Mandel ID. The crystal chemistry of submandibular and parotid salivary
gland stones. J Oral Pathol 1979;8:284-91. DOI PubMed
139. Boskey AL, Burstein LS, Mandel ID. Phospholipids associated with human parotid gland sialoliths. Arch Oral Biol 1983;28:655-7.
DOI PubMed
140. Nicoll R, Henein MY. The predictive value of arterial and valvular calcification for mortality and cardiovascular events. Int J Cardiol
Heart Vessel 2014;3:1-5. DOI PubMed PMC
141. Higgins CL, Marvel SA, Morrisett JD. Quantification of calcification in atherosclerotic lesions. Arterioscler Thromb Vasc Biol
2005;25:1567-76. DOI PubMed
142. Reid JD, Andersen ME. Medial calcification (whitlockite) in the aorta. Atherosclerosis 1993;101:213-24. DOI PubMed