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  2. Hip replacement - Wikipedia

    en.wikipedia.org/wiki/Hip_replacement

    D019644. MedlinePlus. 002975. [edit on Wikidata] Hip replacement is a surgical procedure in which the hip joint is replaced by a prosthetic implant, that is, a hip prosthesis. [1] Hip replacement surgery can be performed as a total replacement or a hemi/semi (half) replacement.

  3. Hip resurfacing - Wikipedia

    en.wikipedia.org/wiki/Hip_resurfacing

    Hip resurfacing has been developed as a surgical alternative to total hip replacement (THR). The procedure consists of placing a cap (usually made of cobalt-chrome metal), which is hollow and shaped like a mushroom, over the head of the femur while a matching metal cup (similar to what is used with a THR) is placed in the acetabulum (pelvis socket), replacing the articulating surfaces of the ...

  4. Inside Patrick Kane’s hip resurfacing surgery — and why it’s ...

    www.aol.com/inside-patrick-kane-hip-resurfacing...

    When the two metal surfaces rub against one another in the joint, it can create metal ions. Some people have reactions to those ions, which can loosen the implant and cause tissue damage around ...

  5. List of orthopedic implants - Wikipedia

    en.wikipedia.org/wiki/List_of_orthopedic_implants

    Orthopedic implant example seen with X-ray. An orthopedic implant is a medical device manufactured to replace a missing joint or bone, or to support a damaged bone. [1] The medical implant is mainly fabricated using stainless steel and titanium alloys for strength and the plastic coating that is done on it acts as an artificial cartilage. [2]

  6. New hip replacement tool could transform surgery

    www.aol.com/hip-replacement-tool-could-transform...

    New hip replacement tool could transform surgery. Harriet Heywood - BBC News, Cambridgeshire. September 11, 2024 at 10:01 AM.

  7. Titanium biocompatibility - Wikipedia

    en.wikipedia.org/wiki/Titanium_biocompatibility

    Biocompatibility. Titanium is considered the most biocompatible metal due to its resistance to corrosion from bodily fluids, bio-inertness, capacity for osseointegration, and high fatigue limit. Titanium's ability to withstand the harsh bodily environment is a result of the protective oxide film that forms naturally in the presence of oxygen.

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