Biomedical Engineering Reference
In-Depth Information
36. Qiang Y. W., Chen Y., Brown N., Hu B., Epstein J., Barlogie B., Shaughnessy J. D.,
Jr. Characterization of Wnt/beta-catenin signalling in osteoclasts in multiple
myeloma. British Journal of Haematology 148 (5): 726-738 (2010).
37. Parfitt A. M., Chir B. Cellular basis of bone turnover and bone loss—Rebuttal of
osteocytic resorption-bone flow theory. Clinical Orthopaedics and Related Research
127: 236-247 (1977).
38. Doty S. Morphological evidence of gap junctions between bone cells. Calcified
Tissue International 33 (1): 509-512 (1981).
39. Shapiro F. Variable conformation of GAP junctions linking bone cells: A trans-
mission electron microscopic study of linear, stacked linear, curvilinear, oval,
and annular junctions. Calcified Tissue International 61 (4): 285-293 (1997).
40. Nijweide P. J., Burger E. H., Klein-Nulend J. The osteocyte. In Principles of bone
biology, ed. Bilezikian J. P., Raisz L. G., Rodan G. A., pp. 93-107. San Diego CA:
Academic Press (2002).
41. Knothe Tate M. L., Steck R., Forwood M. R., Niederer P. In vivo demonstra-
tion of load-induced fluid flow in the rat tibia and its potential implications for
processes associated with functional adaptation. Journal of Experimental Biology
203 (18): 2737-2745 (2000).
42. Weinbaum S., Cowin S. C., Zeng Y. A model for the excitation of osteocytes by
mechanical loading-induced bone fluid shear stresses. Journal of Biomechanics
27 (3): 339-360 (1994).
43. Klein-Nulend J., Bacabac R. G., Mullender M. G. Mechanobiology of bone tis-
sue. Pathologie-Biologie 53 (10): 576-580 (2005).
44. Ajubi N. E., KleinNulend J., Nijweide P. J., Vrijheid Lammers T., Alblas M. J.,
Burger E. H. Pulsating fluid flow increases prostaglandin production by cul-
tured chicken osteocytes—A cytoskeleton-dependent process. Biochemical and
Biophysical Research Communications 225 (1): 62-68 (1996).
45. Mullender M., El Haj A., Yang Y., van Duin M., Burger E., Klein-Nulend J.
Mechanotransduction of bone cells in vitro: Mechanobiology of bone tissue.
Medical and Biological Engineering and Computing 42 (1): 14-21 (2004).
46. Bacabac R. G., Smit T. H., Mullender M. G., Dijcks S. J., Loon J. J. V.,
Klein-Nulend J. Nitric oxide production by bone cells is fluid shear stress rate
dependent. Biochemical and Biophysical Research Communications 315 (4): 823-829
(2004).
47. Burger E. H., Klein-Nulend J. Mechanotransduction in bone—Role of the
lacuno-canalicular network. FASEB Journal 13 (9001): 101-112 (1999).
48. Fan X., Roy E., Zhu L., Murphy T. C., Ackert-Bicknell C., Hart C. M., Rosen C.,
Nanes M. S., Rubin J. Nitric oxide regulates receptor activator of nuclear factor-
{kappa}B ligand and osteoprotegerin expression in bone marrow stromal cells.
Endocrinology 145 (2): 751-759 (2004).
49. Machwate M., Harada S., Leu C. T., Seedor G., Labelle M., Gallant M., Hutchins
S. A., et  al. Prostaglandin receptor EP4 mediates the bone anabolic effects of
PGE2. Molecular Pharmacology 60 (1): 36-41 (2001).
50. Hill A. V. The possible effects of the aggregation of the molecules of hemoglobin
on its dissociation curves. Journal of Physiology (London) 40 (iv-vii) (1910).
51. Alon U. An introduction to systems biology: Design principles of biological circuits.
Boca Raton, FL: CRC Press (2007).
52. Roodman G. D. Cell biology of the osteoclast. Experimental Hematology 27 (8):
1229-1241 (1999).
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