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  2. 3D printed medication - Wikipedia

    en.wikipedia.org/wiki/3D_printed_medication

    In addition to 3D drug printing which aims at printing drug formulations, 3D printing can be used to fabricate materials functionalized by drugs, e.g., antibiotics or angiogenic agents. [8] This area which is a part of biomaterials engineering, aims at products such as adhesive patches for wound healing , hydrogel , and non-hydrogel implants ...

  3. Applications of 3D printing - Wikipedia

    en.wikipedia.org/wiki/Applications_of_3D_printing

    3D printing can be particularly useful in research labs due to its ability to make specialized, bespoke geometries. In 2012 a proof of principle project at the University of Glasgow, UK, showed that it is possible to use 3D printing techniques to assist in the production of chemical compounds.

  4. Health technology - Wikipedia

    en.wikipedia.org/wiki/Health_technology

    3D printing is another major development in healthcare. It can be used to produce specialized splints, prostheses, parts for medical devices and inert implants. The end goal of 3D printing is being able to print out customized replaceable body parts. [30] In the following section, it will explain more about 3D printing in healthcare.

  5. Ethics of bioprinting - Wikipedia

    en.wikipedia.org/wiki/Ethics_of_bioprinting

    This process is carried out by a specific printer, which uses several layers in order to complete the design. However, bioprinting uses the ways of 3D printing to create things such as organs, tissues, cells, blood vessels, prosthetics and a broad range of other things that can be used in the medical field.

  6. Organ printing - Wikipedia

    en.wikipedia.org/wiki/Organ_printing

    The field of organ printing stemmed from research in the area of stereolithography, the basis for the practice of 3D printing that was invented in 1984. [5] In this early era of 3D printing, it was not possible to create lasting objects because of the material used for the printing process was not durable.

  7. 3D bioprinting - Wikipedia

    en.wikipedia.org/wiki/3D_bioprinting

    Different models of 3D printing tissue and organs. Three dimensional (3D) bioprinting is the use of 3D printing–like techniques to combine cells, growth factors, bio-inks, and biomaterials to fabricate functional structures that were traditionally used for tissue engineering applications but in recent times have seen increased interest in other applications such as biosensing, and ...

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  9. Materialise NV - Wikipedia

    en.wikipedia.org/wiki/Materialise_NV

    This allowed the design process for customized, patient-specific hearing aid shells to become automated. The resulting designs could then be 3D printed to produce the customised hearing aids. This was the first high volume, end-use application of 3D printing, and today, 99% of the world's hearing aids are now produced using 3D printing. [6]

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