Alvin S. Acerbo, Ph.D.
Affiliations: | 2012 | Biomedical Engineering | Stony Brook University, Stony Brook, NY, United States |
Area:
Biomedical Engineering, Animal Physiology Biology, BiochemistryGoogle:
"Alvin Acerbo"Parents
Sign in to add mentorStefan Judex | grad student | 2012 | SUNY Stony Brook | |
(Local Chemical and Nanostructural Properties of Rat Cortical Bone are Altered by Osteoporosis and Pharmaceutical Treatments.) |
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Publications
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Ross RD, Mashiatulla M, Acerbo AS, et al. (2016) HBM Mice Have Altered Bone Matrix Composition and Improved Material Toughness. Calcified Tissue International |
Acerbo AS, Cook MJ, Gillilan RE. (2015) Upgrade of MacCHESS facility for X-ray scattering of biological macromolecules in solution. Journal of Synchrotron Radiation. 22: 180-6 |
Acerbo AS, Kwaczala AT, Yang L, et al. (2014) Alterations in collagen and mineral nanostructure observed in osteoporosis and pharmaceutical treatments using simultaneous small- and wide-angle X-ray scattering. Calcified Tissue International. 95: 446-56 |
Ross RD, Edwards LH, Acerbo AS, et al. (2014) Bone matrix quality after sclerostin antibody treatment. Journal of Bone and Mineral Research : the Official Journal of the American Society For Bone and Mineral Research. 29: 1597-607 |
Green DE, Adler BJ, Chan ME, et al. (2013) Altered composition of bone as triggered by irradiation facilitates the rapid erosion of the matrix by both cellular and physicochemical processes. Plos One. 8: e64952 |
Acerbo AS, Carr GL, Judex S, et al. (2012) Imaging the material properties of bone specimens using reflection-based infrared microspectroscopy. Analytical Chemistry. 84: 3607-13 |
Tommasini SM, Trinward A, Acerbo AS, et al. (2012) Changes in intracortical microporosities induced by pharmaceutical treatment of osteoporosis as detected by high resolution micro-CT. Bone. 50: 596-604 |
Bhatia A, Albazzaz M, Espinoza OrÃas AA, et al. (2012) Overexpression of DMP1 accelerates mineralization and alters cortical bone biomechanical properties in vivo. Journal of the Mechanical Behavior of Biomedical Materials. 5: 1-8 |