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Results: 231
Number of items: 231
  • Mullender, M. G., Tan, S. D., Vico, L., Alexandre, C., & Klein Nulend, J. (2005). Differences in osteocyte density and bone histomorphometry between men and women and between healthy and osteoporotic subjects. Calcified Tissue International, 77, 291-296. https://doi.org/10.1007/s00223-005-0043-6
  • Bacabac, R. G., Smit, T. H., van Loon, J. J. W. A., & Klein Nulend, J. (2005). Rapid Nitric Oxide production by bone cells in response to mechanical vibration. Journal of gravitational physiology, 12, 153-155.
  • Klein Nulend, J., Bacabac, R. G., Vatsa, A., Tan, S. D., Smit, T. H., & van Loon, J. J. W. A. (2005). Modulation of gene expression in bone cells during strain-adapted bone remodeling. Journal of gravitational physiology, 12, 225-228.
  • Heyligers, I. C., & Klein Nulend, J. (2005). Detection of living cells in non-processed but deep-frozen bone allografts. Cell and tissue banking, 6, 25-31.
  • McGarry, J. P., Klein Nulend, J., Mullender, M. G., & Prendergast, P. J. (2005). A comparison of strain and fluid shear stress in stimulating bone cell responses--a computational and experimental study. The FASEB Journal, 19, 482-494. https://doi.org/10.1096/fj.05-4412fje
  • McGarry, J. P., Klein Nulend, J., & Prendergast, P. J. (2005). The effect of cytoskeletal disruption on pulsatile fluid flow-induced nitric oxide and prostaglandin E2 release in osteocytes and osteoblasts. Biochemical and Biophysical Research Communications, 330, 341-348. https://doi.org/10.1016/j.bbrc.2005.02.175
  • Klein Nulend, J. (2005). Yearly Report 2004, 'Mechanosensing and Chemical Signalling in Single Osteocytes', (NWO-FOM project number FOM V 12). Report for: NWO-FOM. ACTA.
  • Klein Nulend, J., Bacabac, R. G., & van Loon, J. J. W. A. (2005). Botverlies door gewichtloosheid: raakvlakken met osteoporose. Nederlands Tijdschrift voor Calcium- en Botstofwisseling, 8, 62-65.
  • Bacabac, R. G., Smit, T. H., Mullender, M. G., Dijcks, S. J., van Loon, J. J. W. A., & Klein Nulend, J. (2004). Nitric oxide production by bone cells is fluid shear stress rate dependent. Biochemical and Biophysical Research Communications, 315, 823-829. https://doi.org/10.1016/j.bbrc.2004.01.138
  • Bakker, A. D., Klein Nulend, J., & Burger, E. H. (2004). Shear stress inhibits while disuse promotes osteocyte apoptosis. Biochemical and Biophysical Research Communications, 320, 1163-1168. https://doi.org/10.1016/j.bbrc.2004.06.056
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