Characterization, quantification, and isolation of aluminum oxide particles on grit blasted titanium aluminum alloy hip implants.
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Summary
Aluminum oxide on the surface of grit-blasted titanium aluminum alloy implants is, in fact, a residue of grit blasting.
- Type
- article
- Published
- 2007-10-01
- Cited by
- 14
- References
- 17
- OpenAlex
- https://openalex.org/W1993259678
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:41640817
Keywords
Materials science, Microanalysis, Scanning electron microscope, Microstructure, Alloy
References
- Biomaterial and implant surfaces: on the role of cleanliness, contamination, and preparation procedures.
- Total Hip Arthroplasty with Use of the Cementless Zweymüller Alloclassic System: A Ten to Thirteen-Year Follow-up Study
- Tissue reactions to titanium endoprostheses. Autopsy studies in four cases.
- Charakterisierung der Oxidschichten auf Titan und Titanlegierungen sowie deren Reaktionen in Kontakt mit biologisch relevanten Modellösungen
- Alumina particles influence the interactions of cocultured osteoblasts and macrophages
- Reactions of surrounding tissue to the cementless hip implant Ti-6Al-4V after an implantation period of several years
- Adverse tissue reactions to wear particles from Co-alloy articulations, increased by alumina-blasting particle contamination from cementless Ti-based total hip implants. A report of seven revisions with early failure.
- Retrieval study of uncemented metal-metal hip prostheses revised for early loosening.
- Technical note: Embedded particulate contaminants in textured metal implant surfaces
- Biologic fixation of a press-fit titanium hip joint endoprosthesis.
- Long-term results with the cementless Alloclassic brand hip arthroplasty system.
- Survival analysis of cementless grit-blasted titanium total hip arthroplasties.
- Osseointegrated titanium implants. Requirements for ensuring a long-lasting, direct bone-to-implant anchorage in man.
- Periprosthetic bone loss in total hip arthroplasty. Polyethylene wear debris and the concept of the effective joint space.
- Cementless Total Hip Arthroplasty with a Tapered, Rectangular Titanium Stem and a Threaded Cup: A Minimum Ten-Year Follow-up
- Cementless total hip arthroplasty with the rectangular titanium Zweymuller stem. A concise follow-up, at a minimum of fifteen years, of a previous report.
Cited by
- Reduction of particle embedding in solid particle erosion of polymers
- Surface mediated in situ differentiation of mesenchymal stem cells on gene-functionalized titanium films fabricated by layer-by-layer technique.
- How is wettability of titanium surfaces influenced by their preparation and storage conditions?
- A new biocompatible coating layer applied on titanium substrates using a modified zinc phosphatizing method
- Conditions leading to the embedding of angular and spherical particles during the solid particle erosion of polymers
- Contamination of surfaces for osseointegration of cementless total hip implants by small aluminium oxide particles: analysis of established implants by use of a new technique
- A cementless hip system with a new surface for osseous integration
- Surface engineering of titanium substrates with chitosan-atorvastatin conjugate for reduced inflammation responses and improved cytocompatibility.
- Fabrication of strongly attached hydroxyapatite coating on titanium by hydrothermal treatment of Ti–Zn–PO4 coated titanium in CaCl2 solution
- Surface contaminants inhibit the osseointegration of orthopaedic implants
- The Condition of Ni-Cr Alloy Surface After Abrasive Blasting with Various Parameters
- Clinical and Radiological Results of Crowe Type 3 or 4 Dysplasia Patients Operated on With Total Hip Arthroplasty Using a Cementless Rectangular Femoral Component Without Fixating or Grafting the Transverse Osteotomy Site.
- High Revision Rates of a Cementless Beta-Titanium Alloy Stem with Contamination-Free Roughened Surface in Primary Total Hip Arthroplasty
- Biological Safety Evaluation and Surface Modification of Biocompatible Ti–15Zr–4Nb Alloy
- Abrasive Jet Micro-Machining of Polymeric Materials
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