The effects of excess calcium on the handling and mechanical properties of hydrothermal derived calcium phosphate bone cement
Bone; Bone cement; Calcium phosphate; Compressive strength; Hydroxyapatite; Lime; Manufacture; Mechanical properties; Ammonium dihydrogen phosphate; Calcium phosphate bone cement; Calcium phosphate cement; Distilled water; Hydrothermal methods; Hydroxyapatite powder; Morphological properties; Synthe...
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Main Authors: | , , , , , |
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Format: | Conference Paper |
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Institute of Physics Publishing
2023
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Summary: | Bone; Bone cement; Calcium phosphate; Compressive strength; Hydroxyapatite; Lime; Manufacture; Mechanical properties; Ammonium dihydrogen phosphate; Calcium phosphate bone cement; Calcium phosphate cement; Distilled water; Hydrothermal methods; Hydroxyapatite powder; Morphological properties; Synthesized powder; Calcium |
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