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  2. Titanium biocompatibility - Wikipedia

    en.wikipedia.org/wiki/Titanium_biocompatibility

    Titanium dental implants. Titanium was first introduced into surgeries in the 1950s after having been used in dentistry for a decade prior. [1] It is now the metal of choice for prosthetics, internal fixation, inner body devices, and instrumentation. Titanium is used from head to toe in biomedical implants.

  3. Titanium alloys - Wikipedia

    en.wikipedia.org/wiki/Titanium_alloys

    TAV-ELI is the most commonly used medical implant-grade titanium alloy. [29] [31] Due to its excellent biocompatibility, corrosion resistance, fatigue resistance, and low modulus of elasticity, which closely matches human bone, [32] TAV-ELI is the most commonly used medical implant-grade titanium alloy. [33]

  4. 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]

  5. Implant (medicine) - Wikipedia

    en.wikipedia.org/wiki/Implant_(medicine)

    The surface of implants that contact the body might be made of a biomedical material such as titanium, silicone, or apatite depending on what is the most functional. [1] In 2018, for example, American Elements developed a nickel alloy powder for 3D printing robust, long-lasting, and biocompatible medical implants. [2]

  6. Bioresorbable metal - Wikipedia

    en.wikipedia.org/wiki/Bioresorbable_Metal

    This is especially relevant in orthopaedic applications, where although many surgeries only require implants to provide temporary support (allowing the surrounding tissue to heal), the majority of current bio-metals are permanent (e.g. stainless steel, titanium). Degradation of the implant means that intervention or secondary surgery will not ...

  7. Nitinol biocompatibility - Wikipedia

    en.wikipedia.org/wiki/Nitinol_Biocompatibility

    Nitinol biocompatibility is an important factor in biomedical applications.Nitinol (NiTi), which is formed by alloying nickel and titanium (~ 50% Ni), is a shape-memory alloy with superelastic properties more similar to that of bone, [clarification needed] when compared to stainless steel, another commonly used biomaterial.

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