Publication: Time-lapsed assessment of microcrack initiation and propagation in murine cortical bone at submicrometer resolution
Time-lapsed assessment of microcrack initiation and propagation in murine cortical bone at submicrometer resolution
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Voide, R., Schneider, P., Stauber, M., Wyss, P., Stampanoni, M., Sennhauser, U., van Lenthe, G. H., & Müller, R. (2009). Time-lapsed assessment of microcrack initiation and propagation in murine cortical bone at submicrometer resolution. Bone, 45(2), 164–173. https://doi.org/10.1016/j.bone.2009.04.248
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The strength of bone tissue is not only determined by its mass, but also by other properties usually referred to as bone quality, such as microarchitecture, distribution of bone cells, or microcracks and damage. It has been hypothesized that the bone ultrastructure affects microcrack initiation and propagation. Due to its high resolution, bone assessment by means of synchrotron radiation (SR)-based computed tomography (CT) allows unprecedented three-dimensional (3D) and non-invasive insights into ultrastructural bone phenotypes, such
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Voide, R., Schneider, P., Stauber, M., Wyss, P., Stampanoni, M., Sennhauser, U., van Lenthe, G. H., & Müller, R. (2009). Time-lapsed assessment of microcrack initiation and propagation in murine cortical bone at submicrometer resolution. Bone, 45(2), 164–173. https://doi.org/10.1016/j.bone.2009.04.248