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  2. Hip dysplasia - Wikipedia

    en.wikipedia.org/wiki/Hip_dysplasia

    Hip dysplasia can be diagnosed by ultrasound [43] and projectional radiography ("X-ray"). [44] Ultrasound imaging is generally preferred at up to 4 months due to limited ossification of the femoral head up until then, and is the most accurate method for imaging of the hip during the first few months after birth. However, in most instances ...

  3. Titanium biocompatibility - Wikipedia

    en.wikipedia.org/wiki/Titanium_biocompatibility

    One can find titanium in neurosurgery, bone conduction hearing aids, false eye implants, spinal fusion cages, pacemakers, toe implants, and shoulder/elbow/hip/knee replacements along with many more. The main reason why titanium is often used in the body is due to titanium's biocompatibility and, with surface modifications, bioactive surface.

  4. Osseointegration - Wikipedia

    en.wikipedia.org/wiki/Osseointegration

    Osseointegration is also defined as: "the formation of a direct interface between an implant and bone, without intervening soft tissue". [1]An osseointegrated implant is a type of implant defined as "an endosteal implant containing pores into which osteoblasts and supporting connective tissue can migrate". [2]

  5. Artificial cartilage - Wikipedia

    en.wikipedia.org/wiki/Artificial_cartilage

    Artificial cartilage is a synthetic material made of hydrogels [1] or polymers that aims to mimic the functional properties of natural cartilage in the human body. Tissue engineering principles are used in order to create a non-degradable and biocompatible material that can replace cartilage. [2]

  6. Ship of Theseus - Wikipedia

    en.wikipedia.org/wiki/Ship_of_Theseus

    The Ship of Theseus, also known as Theseus's Paradox, is a thought experiment and paradox about whether an object is the same object after having all of its original components replaced over time, typically one after the other.

  7. Ceramic - Wikipedia

    en.wikipedia.org/wiki/Ceramic

    The most common such materials are lead zirconate titanate and barium titanate. Aside from the uses mentioned above, their strong piezoelectric response is exploited in the design of high-frequency loudspeakers, transducers for sonar, and actuators for atomic force and scanning tunneling microscopes.

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