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- W4313595404 abstract "<ns4:p><ns4:bold>Background:</ns4:bold> 3D-printing has shown potential in several medical advances because of its ability to create patient-specific surgical models and instruments. In fact, this technology makes it possible to acquire and study physical models that accurately reproduce patient-specific anatomy. The challenge is to apply 3D-printing to reproduce the porous structure of a bone tissue, consisting of compact bone, spongy bone and bone marrow.</ns4:p><ns4:p> <ns4:bold>Methods:</ns4:bold> An interesting approach is presented here for reproducing the structure of a bone tissue of a femur by 3D-printing porous structure. Through the process of CT segmentation, the distribution of bone density was analysed. In 3D-printing, the bone density was compared with the density of infill.</ns4:p><ns4:p> <ns4:bold>Results:</ns4:bold> The zone of compact bone, the zone of spongy bone and the zone of bone marrow can be recognized in the 3D printed model by a porous density additive manufacturing method.</ns4:p><ns4:p> <ns4:bold>Conclusions:</ns4:bold> The application of 3D-printing to reproduce a porous structure, such as that of a bone, makes it possible to obtain physical anatomical models that likely represent the internal structure of a bone tissue. This process is low cost and easily reproduced.</ns4:p>" @default.
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- W4313595404 date "2023-01-06" @default.
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- W4313595404 title "3D-printing of porous structures for reproduction of a femoral bone" @default.
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- W4313595404 doi "https://doi.org/10.12688/f1000research.129267.1" @default.
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