vdvornyk,
524,
Journal Article,
,
Tests of linkage and/or association of TGF-β1 and COL1A1 genes with bone mass. (2005). Osteoporosis International 16 (1), 86-92, 2005.
sosaid,
650,
Journal Article,
,
Kanoun, M., Goumri-Said, S., Merad, A., & Cibert, J. (2005). First-principles investigation of electronic structure and magnetic properties in ferromagnetic Ga1- xMnxN and Al1- xMnxN. Journal of Physics D: Applied Physics, 38, 1853.
sosaid,
650,
Journal Article,
,
Kanoun, M., Goumri-Said, S., Merad, A., & Cibert, J. (2005). First-principles investigation of electronic structure and magnetic properties in ferromagnetic Ga1- xMnxN and Al1- xMnxN. Journal of Physics D: Applied Physics, 38, 1853.
sosaid,
650,
Journal Article,
,
Kanoun, M., Goumri-Said, S., Merad, A., & Cibert, J. (2005). First-principles investigation of electronic structure and magnetic properties in ferromagnetic Ga1- xMnxN and Al1- xMnxN. Journal of Physics D: Applied Physics, 38, 1853.
sosaid,
650,
Journal Article,
,
Kanoun, M., Goumri-Said, S., Merad, A., & Cibert, J. (2005). First-principles investigation of electronic structure and magnetic properties in ferromagnetic Ga1- xMnxN and Al1- xMnxN. Journal of Physics D: Applied Physics, 38, 1853.
sosaid,
650,
Journal Article,
,
Kanoun, M., Goumri-Said, S., Merad, A., & Cibert, J. (2005). First-principles investigation of electronic structure and magnetic properties in ferromagnetic Ga1- xMnxN and Al1- xMnxN. Journal of Physics D: Applied Physics, 38, 1853.
sosaid,
650,
Journal Article,
,
Kanoun, M., Goumri-Said, S., Merad, A., & Cibert, J. (2005). First-principles investigation of electronic structure and magnetic properties in ferromagnetic Ga1- xMnxN and Al1- xMnxN. Journal of Physics D: Applied Physics, 38, 1853.
sosaid,
650,
Journal Article,
,
Kanoun, M., Goumri-Said, S., Merad, A., & Cibert, J. (2005). First-principles investigation of electronic structure and magnetic properties in ferromagnetic Ga1- xMnxN and Al1- xMnxN. Journal of Physics D: Applied Physics, 38, 1853.
vdvornyk,
524,
Journal Article,
,
A novel pathophysiological mechanism for osteoporosis suggested by an in vivo gene expression study of circulating monocytes. (2005). Journal of Biological Chemistry 280 (32), 29011-29016, 2005.