
The spatial distribution of mineralization density is an important signature of bone growth and remodeling processes, and its alterations are often related to disease. The present study combines high‐resolution focused ion beam‐scanning electron microscopy to investigate bone ultrastructure in 3D with quantitative backscattered electron imaging to estimate local bone mineral content. The results yield insight into bone mineralization processes at the nanometer scale and present the possibility for a potential role of the nanochannel system in permitting ion and small molecule diffusion throughout the extracellular matrix. Such a possible function could thereby lead to the sequestration or occlusion of the ions and small molecules within the extracellular matrix.
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