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Intelligent Medical Devices and Implants research group

Introduction of the Research Group

The main research focus of the research group is the development of smart medical devices and implants using polymers. Members of the research team have been involved in the development of a number of innovative devices and solutions in collaboration with partners, such as a force-feedback laparoscopic device, wear-reduced elbow and shoulder implant systems, microfluidics and medical diagnostic devices. We use state-of-the-art tools (polymer and metal 3D printing) in our developments and attach great importance to collaboration with medical partners.

Watch our 3-minute introductory video:

Achievements

- laparoscopic device with 3D force measurement and force feedback (INCITE - collaborators: Philips (NL), FRK (PL), ELKH MFA (HU), BME ETT (HU))
- Wear-reduced elbow and shoulder joint implant system (collaborator: Semmelweis University (HU))
- two-cavity mold for the production of unpatterned microfluidic chips from COP and PC materials (collaborators: ELKH MFA, 77 Elektronika)

Publications

Rado J., Ducso C., Földesy P., Szebényi G., Nawrat Z., Rohr K., Fürjes P., 3D force sensors for laparoscopic surgery tool, 2018, Microsystem Technologies, https://link.springer.com /article/10.1007/s00542-017-3443-4
Hangody Gy., Szebényi G., Abonyi B., Kiss R., Hangody L., Pap K., Does a different dose of gamma irradiation have the same effect on five different types of tendon allografts?, 2017, International Orthopaedics https://pubmed.ncbi.nlm.nih.gov/27847977/
Faragó D., Szebényi G., Temesi T., Kiss R., Pap K., Evaluation of the Effect of Freezing and Gamma Irradiation on Different Types of Tendon Allografts by DIC Assisted Tensile Testing, 2021, Applied Sciences, https://www.mdpi.com/2076-3417/10/15/5369
Krizsma Sz. G., Kovács NK, Kovács JG, Suplicz A., In-situ monitoring of deformation in rapid prototyped injection molds, 2021, Additive Manufacturing, https://www.sciencedirect.com/science/article/pii/S2214860421001664
Ilyés K., Balogh A., Casian T., Igricz T., Borbás E., Démuth B., Vass P., Menyhárt L., Kovács NK, Marosi Gy., Tomuță I., Nagy Zs. K., 3D floating tablets: Appropriate 3D design from the perspective of different in vitro dissolution testing methodologies, 2019, International Journal of Pharmaceutics, https://www.sciencedirect.com/science/article/pii/S0378517319304673?via%3Dihub

Patents

Joint endoprosthesis component, P2100145, 2021, Gy. Kocsis (Semmelweis University), Kiss Z., Szebényi G. Elbow prosthesis implant, 2022, Gy. Kocsis (Semmelweis University), G. Szebényi, T. Temesi.

Journals

Wear, Additive Manufacturing, International Orthopaedics

Infrastructure

Access to implant testing equipment, wear testers, 3D printers.

Projects

Development of implant materials and surfaces with improved load bearing capacity and wear resistance (OTKA K 138472), 2021-2025, OTKA K, NKFIH
Development of custom micro-structured surfaces for improved lubrication in shoulder implants (CELSA), 2020-2022, CELSA
Developing a new generation of manufacturing process of tailor-made medical implants and tailor-made medical aids for additive technologies (NVKP_16-1-2016-0022), 2017-2019, NKFIH
INCITE - Intelligent Catheters in Advanced Systems for Interventions (ENIAC Call 2013 -1 / 621278-2), 2014-2017, ENIAC FP7-JTI

Industry relations

Varinex Zrt.
77 Elektronika Kft.