Русский

Polish and Taiwan, China scientists are committed to new 3D printing dental implants

144
2024-04-17 16:18:53
Посмотреть перевод

Researchers from Wroclaw University of Technology and Taipei University of Technology in China are developing dental implants made from 3D printed ceramic structures connected to metal cores. Due to the use of biodegradable magnesium, bone tissue will gradually grow into such implants.
 
"The result will be a composite implant that can replace human teeth. Its scaffold is made of aluminum oxide and manufactured using additive methods [3D printing], ensuring that it will be customized according to specific patient needs," the press release stated.

In the upper part (crown), the ceramic structure is solid, and in the lower part (root), the ceramic structure is porous. Therefore, it can be filled with liquid metal - magnesium alloy. This will reduce the fragility of the structure, and the core itself will initially act as an anchor, fixing the implant in the jawbone. Magnesium will gradually degrade, releasing space for bone tissue growth (this process is called bone integration). As a result, the implant will become very stable - embedded in human tissue.

Scientists from Taiwan, China, China, in cooperation with researchers from Wroclaw, have developed appropriate ceramic preforms with openings, that is, they combine with metal cores to form implant structures. These structures were sent to the Department of Light Component Engineering, Casting, and Automation at the School of Mechanical Engineering, Wroclaw University of Technology, where researchers injected metal (a biocompatible magnesium alloy) into them.

The project is still in its early stages
"We are in the early stages of the project, so we are currently testing two casting techniques, and then we will choose the most favorable one. The first is the pressure infiltration method, or more accurately, from liquid pressing, placing the ceramic shape in a pressing chamber and pouring liquid metal, then lowering the piston to press the liquid metal into the pores of the ceramic. Preformed parts," Dr. Anna Dmitruk explained in a press release.

"The second technology is precision casting, which is also used in jewelry production. Here, we first make gypsum molds for wax or plastic models that were previously prepared," she added.

The work of the CERMET program will last for three years. The result will be an implant prototype. After development is completed, scientists can seek funding for subsequent stages of work, including medical pre research.

The project leader is Professor Krzysztof Naplocha from the School of Mechanical Engineering at Wroclaw University of Technology, with team members including Dr. Anna Dmitruk, Dr. Adrianna Filipiak Kaczmarek, and Dr. Natalia Ra ź Ny.

Source: Laser Net

Связанные рекомендации
  • SEI and Matik showcase the latest laser technology at a joint printing exhibition

    SEI Laser, a leading manufacturer of laser cutting systems, and its North American distributor Matik, Inc. will showcase SEI Laser's three most popular machines at the upcoming Joint Printing Expo. Visit booth C2811 on the C floor of the Joint Printing Expo to watch live demonstrations of MERCURY, X-TYPE, and Labelmaster.MERCURY is the ideal choice for cutting everything from paper and cardboard t...

    2023-10-17
    Посмотреть перевод
  • Visual platforms bring new perspectives to optical research

    The advanced testing platform of Liquid Instruments is now available for Apple Vision Pro, providing optical researchers with the first interactive 3D testing system. By integrating the Moku system with camera based visual devices, the efficiency of the laboratory has been significantly improved.The Moku platform utilizes the processing power of field programmable gate arrays (FPGAs) to provide a ...

    2024-05-23
    Посмотреть перевод
  • Zhejiang University has prepared ultra strong and tough 3D printing elastic materials

    Professor Xie Tao and researcher Wu Jingjun from the School of Chemical Engineering and Biotechnology at Zhejiang University have designed a new type of photosensitive resin and used it to create a "super rubber band" that can stretch to over 9 times its own length and lift 10 kilograms of objects with a "body" with a diameter of 1 millimeter through 3D printing. The relevant results were recently...

    2024-07-06
    Посмотреть перевод
  • New, low-cost, and high-efficiency photonic integrated circuits

    The rapid development of photonic integrated circuits (PICs) has combined multiple optical devices and functions on a single chip, completely changing optical communication and computing systems.For decades, silicon-based PICs have dominated the field due to their cost-effectiveness and integration with existing semiconductor manufacturing technologies, despite their limitations in electro-optic ...

    2024-05-10
    Посмотреть перевод
  • Using high-speed scanning remelting technology to achieve AlSi10Mg laser powder bed fusion with excellent strength and plasticity properties

    The development of additive manufacturing (AM) has profoundly changed the manufacturing industry, and this technology has been applied in fields such as food, medicine, automotive, and electronic components. Especially in the aerospace field, where extremely lightweight and high-strength (~500mpa) components are required, aluminum alloy additive manufacturing is considered a very promising solutio...

    2024-10-08
    Посмотреть перевод