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Effect of pore size on tissue ingrowth and osteoconductivity in biodegradable Mg alloy scaffolds - Julia Augustin, Franziska Feichtner, Anja-Christina Waselau, Stefan Julmi, Christian Klose, Peter Wriggers, Hans Jürgen Maier, Andrea Meyer-Lindenberg,
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Effect of pore size on tissue ingrowth and osteoconductivity in biodegradable Mg alloy scaffolds - Julia Augustin, Franziska Feichtner, Anja-Christina Waselau, Stefan Julmi, Christian Klose, Peter Wriggers, Hans Jürgen Maier, Andrea Meyer-Lindenberg,
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PDF) Histological, Histomorphometrical, and Biomechanical Studies of Bone-Implanted Medical Devices: Hard Resin Embedding
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Histological, Histomorphometrical, and Biomechanical Studies of Bone-Implanted Medical Devices: Hard Resin Embedding
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Histological, Histomorphometrical, and Biomechanical Studies of Bone-Implanted Medical Devices: Hard Resin Embedding
![Effect of pore size on tissue ingrowth and osteoconductivity in biodegradable Mg alloy scaffolds - Julia Augustin, Franziska Feichtner, Anja-Christina Waselau, Stefan Julmi, Christian Klose, Peter Wriggers, Hans Jürgen Maier, Andrea Meyer-Lindenberg, Effect of pore size on tissue ingrowth and osteoconductivity in biodegradable Mg alloy scaffolds - Julia Augustin, Franziska Feichtner, Anja-Christina Waselau, Stefan Julmi, Christian Klose, Peter Wriggers, Hans Jürgen Maier, Andrea Meyer-Lindenberg,](https://journals.sagepub.com/cms/10.1177/22808000221078168/asset/images/large/10.1177_22808000221078168-fig1.jpeg)
Effect of pore size on tissue ingrowth and osteoconductivity in biodegradable Mg alloy scaffolds - Julia Augustin, Franziska Feichtner, Anja-Christina Waselau, Stefan Julmi, Christian Klose, Peter Wriggers, Hans Jürgen Maier, Andrea Meyer-Lindenberg,
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