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A Modified Porous Titanium Sheet Prepared by Plasma-Activated Sintering for Biomedical Applications

机译:通过等离子活化烧结制备的生物医学改性多孔钛板

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摘要

This study aimed to develop a contamination-free porous titanium scaffold by a plasma-activated sintering within an originally developed TiN-coated graphite mold. The surface of porous titanium sheet with or without a coated graphite mold was characterized. The cell adhesion property of porous titanium sheet was also evaluated in this study. The peak of TiC was detected on the titanium sheet processed with the graphite mold without a TiN coating. Since the titanium fiber elements were directly in contact with the carbon graphite mold during processing, surface contamination was unavoidable event in this condition. The TiC peak was not detectable on the titanium sheet processed within the TiN-coated carbon graphite mold. This modified plasma-activated sintering with the TiN-coated graphite mold would be useful to fabricate a contamination-free titanium sheet. The number of adherent cells on the modified titanium sheet was greater than that of the bare titanium plate. Stress fiber formation and the extension of the cells were observed on the titanium sheets. This modified titanium sheet is expected to be a new tissue engineering material in orthopedic bone repair.
机译:这项研究旨在通过在最初开发的涂有TiN的石墨模具中进行等离子体活化烧结来开发无污染的多孔钛支架。表征具有或不具有涂覆的石墨模具的多孔钛片的表面。在这项研究中还评估了多孔钛片的细胞粘附性能。在用没有TiN涂层的石墨模具加工的钛板上检测到TiC的峰值。由于钛纤维元件在加工过程中直接与碳石墨模具接触,因此在这种情况下不可避免地会发生表面污染。在经TiN涂层的碳石墨模具中处理的钛板上无法检测到TiC峰。用涂有TiN的石墨模具进行的这种改性的等离子体活化烧结将对制造无污染的钛板有用。改性钛板上的粘附细胞数量大于裸钛板上的粘附细胞数量。在钛板上观察到应力纤维的形成和泡孔的延伸。这种改性的钛板有望成为整形外科骨修复中的一种新型组织工程材料。

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