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2.5 References for CHAPTER 2<br />

1 WebMD. Better information. Better health.<br />

http://www.webmd.com/rheumatoidarthritis/guide/most-common-arthritis-types.<br />

2011;<br />

2 Gigtforeningen.<br />

www.gigtforeningen.dk/viden+om+gigt/diagnoser/slidgi<br />

gt. 2011;<br />

3 Wu C.W. and Kalunian K.C. New developments in<br />

osteoarthritis. Clin Geriatr Med. 2005;21(3):589-601, vii.<br />

4 Lawrence R.C., Helmick C.G., Arnett F.C., Deyo R.A.,<br />

Felson D.T., Giannini E.H., Heyse S.P. et al. Estimates <strong>of</strong><br />

the prevalence <strong>of</strong> arthritis and selected musculoskeletal<br />

disorders in the United States. Arthritis Rheum.<br />

1998;41(5):778-799.<br />

5 Moskowitz R.W., Altman R.D., Hochberg M.C.,<br />

Buckwalter J.A., and Goldberg V.M. Chapter 3.<br />

Osteoarthritis; Diagnosis and Medical/surgical<br />

Management. 2007;4th(3)<br />

6 Cooper C., Cook P.L., Osmond C., Fisher L., and Cawley<br />

M.I. Osteoarthritis <strong>of</strong> the hip and osteoporosis <strong>of</strong> the<br />

proximal femur. Ann Rheum Dis. 1991;50(8):540-542.<br />

7 Foss M.V. and Byers P.D. Bone density, osteoarthrosis <strong>of</strong><br />

the hip, and fracture <strong>of</strong> the upper end <strong>of</strong> the femur. Ann<br />

Rheum Dis. 1972;31(4):259-264.<br />

8 Hilal G., Martel-Pelletier J., Pelletier J.P., Ranger P., and<br />

Lajeunesse D. Osteoblast-like cells from human<br />

<strong>subchondral</strong> osteoarthritic <strong>bone</strong> demonstrate an altered<br />

phenotype in vitro: possible role in <strong>subchondral</strong> <strong>bone</strong><br />

sclerosis. Arthritis Rheum. 1998;41(5):891-899.<br />

9 Dequeker J., Aerssens J., and Luyten F.P. Osteoarthritis<br />

and osteoporosis: clinical and research evidence <strong>of</strong> inverse<br />

relationship. Aging Clin Exp Res. 2003;15(5):426-439.<br />

10 Brandt K.D., Doherty M., and Lomander L.S.<br />

Osteoarthritis. 2003;<br />

11 Goldring M.B. Update on the biology <strong>of</strong> the chondrocyte<br />

and new approaches to treating cartilage diseases. Best<br />

Pract Res Clin Rheumatol. 2006;20(5):1003-1025.<br />

12 Felson D.T., Lawrence R.C., Dieppe P.A., Hirsch R.,<br />

Helmick C.G., Jordan J.M., Kington R.S. et al.<br />

Osteoarthritis: new insights. Part 1: the disease and its risk<br />

factors. Ann Intern Med. 2000;133(8):635-646.<br />

13 Worrall J.G. Understanding Arthritis and Rheumatism.<br />

2005;<br />

CHAPTER 2: Introduction<br />

35<br />

14 Rowan A.D. Cartilage catabolism in arthritis: factors that<br />

influence homeostasis. Expert Rev Mol Med. 2001;2001:1-<br />

20.<br />

15 Burr D.B. Targeted and nontargeted remodeling. Bone.<br />

2002;30(1):2-4.<br />

16 Baron R, Olsen B.J, Lian J.B, Canalis E., Monroe D.G.,<br />

Robey P.G., Mundy G.R. et al. Anatomy and Biology <strong>of</strong><br />

Bone Matrix and Cellular Elements. Primer on the<br />

Metabolic Bone Diseases and Disorders <strong>of</strong> Mineral<br />

Metabolism. 2003;5:1-58.<br />

17 Clarke B. Normal <strong>bone</strong> anatomy and physiology. Clin J<br />

Am Soc Nephrol. 2008;3 Suppl 3:S131-S139.<br />

18 Erlebacher A., Filvar<strong>of</strong>f E.H., Gitelman S.E., and Derynck<br />

R. Toward a molecular understanding <strong>of</strong> skeletal<br />

development. Cell. 1995;80(3):371-378.<br />

19 Keraplis A.C. Principles <strong>of</strong> <strong>bone</strong> biology. 2002;33-58.<br />

20 Provot S. and Schipani E. Molecular mechanisms <strong>of</strong><br />

endochondral <strong>bone</strong> development. Biochem Biophys Res<br />

Commun. 2005;328(3):658-665.<br />

21 Seeman E. and Delmas P.D. Bone quality--the material<br />

and structural basis <strong>of</strong> <strong>bone</strong> strength and fragility. N Engl<br />

J Med. 2006;354(21):2250-2261.<br />

22 Robey P.G. and Bodkey A.L. Extracellular matrix and<br />

biomineralization <strong>of</strong> <strong>bone</strong>. Primer on the metabolic <strong>bone</strong><br />

diseases and disorders <strong>of</strong> mineral metabolism.<br />

2003;5(6):38-46.<br />

23 Baron R. General principles <strong>of</strong> Bone Biology. Primer on<br />

the metabolic <strong>bone</strong> diseases and disorders <strong>of</strong> mineral<br />

metabolism. 2003;(1):1-8.<br />

24 Matos M.A., Araujo F.P., and Paixao F.B.<br />

Histomorphometric evaluation <strong>of</strong> <strong>bone</strong> healing in rabbit<br />

fibular osteotomy model without fixation. J Orthop Surg<br />

Res. 2008;3:4-<br />

25 Matsuo K. Cross-talk among <strong>bone</strong> cells. Curr Opin<br />

Nephrol Hypertens. 2009;18(4):292-297.<br />

26 Matsuo K. and Irie N. Osteoclast-osteoblast<br />

communication. Arch Biochem Biophys. 2008;473(2):201-<br />

209.<br />

27 Henriksen K., Neutzsky-Wulff A.V., Bonewald L.F., and<br />

Karsdal M.A. Local communication on and within <strong>bone</strong><br />

controls <strong>bone</strong> remodeling. Bone. 2009;44(6):1026-1033.

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