3D Printed Ventilation Tubes and their Effect on Biological Models

Author:

Carbajal-Castillo Sergio Alejandro1,Castillo-López Irma Yolanda1,Govea-Camacho Luis Humberto1,Gonzalez-Ojeda Alejandro1,Cervantes-Guevara Gabino2,Cervantes-Pérez Enrique3,Ramírez-Ochoa Sol3,Vázquez-Sánchez Sergio Jiram1,Fuentes-Orozco Clotilde1,Delgado-Hernández Gonzalo1,Tavares-Ortega Jaime Alberto1

Affiliation:

1. Hospital de Especialidades, Centro Médico Nacional de Occidente

2. University of Guadalajara

3. Hospital Civil de Guadalajara

Abstract

Abstract Introduction: Acute otitis media (AOM) causes inflammation and hearing loss. Ventilation tubes are key in treatment. 3D printing improves prostheses in otorhinolaryngology, offering precision and greater adaptability. Material and Methods: An experimental study was conducted with Wistar rats from July to December 2020. 3D tympanostomy tube models were designed, with technical specifications and tests performed on inexpensive 3D printers. And the tympanostomy tube was inserted endoscopically. Results: Procedures were performed on five rats with implants in both ears. Pre-intervention pathologies, such as atical retraction and glue ear, were found. The PLA-printed tympanostomy tube showed improvement after adjustments. Histopathological results revealed significant middle and inner ear damage. Conclusion: In our study, the design and 3D printing of implants fulfilled the desired functions when modified, with a height of 5 mm. Complications included PLA degradation and ear damage. There were no adverse events during observation, highlighting the need for further research on 3D printed implants.

Publisher

Research Square Platform LLC

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