Danko Maria, Chromy Lubos, Ferencik Norbert, Sestakova Marcela, Kolembusova Petra, Balint Tomas, Durica Jaroslav, Zivcak Jozef
Department of Biomedical Engineering and Measurement, Faculty of Mechanical Engineering, Technical University of Kosice, 04200 Kosice, Slovakia.
1st Department of Stomatology, Faculty of Medicine, Pavol Jozef Safarik University in Kosice, 04154 Kosice, Slovakia.
Bioengineering (Basel). 2023 Nov 30;10(12):1379. doi: 10.3390/bioengineering10121379.
The increasing demand for dental aesthetics, articulation corrections, and solutions for pain and frequent bruxism demands quick and effective restorative dental management. The biomedical research aimed to create a beneficial, ecological, and readily available anterior deprogrammer to determine the centric relation (CR) of cases. This medical device is additively manufactured from a biocompatible material. Size is customizable based on the width of the patient's anterior central incisors. This is a pilot study with two subjects. The task was to develop a complete data protocol for the production process, computer-aided design (CAD), and three-dimensional (3D) printing of the anterior deprogrammers. The research focused on creating simple and practically applicable tools for the dentist's prescription (anterior deprogrammer in three sizes), and secondly for the communication between the dentist and the patient (computer application). The tested hypothesis was whether, according to these novel tools, it is possible to produce functional occlusal splints, which could be manufactured using current technologies. This study compared a traditional splint with a digitally designed and 3D-printed one. The tested hypothesis was whether manufactured occlusal splints differ in patients' subjective perception of comfort. Each conservative treatment was monitored for ten weeks. Initial results are promising; no statistically significant difference was found between the productive technologies.
对牙齿美学、咬合矫正以及疼痛和频繁磨牙症解决方案的需求不断增加,这就需要快速有效的牙齿修复管理。生物医学研究旨在制造一种有益、环保且易于获取的前牙解除器,以确定病例的正中关系(CR)。这种医疗设备由生物相容性材料通过增材制造而成。其尺寸可根据患者前中切牙的宽度定制。这是一项针对两名受试者的试点研究。任务是为前牙解除器的生产过程、计算机辅助设计(CAD)和三维(3D)打印制定完整的数据协议。该研究重点在于为牙医的处方创建简单且实际适用的工具(三种尺寸的前牙解除器),其次是为牙医与患者之间的沟通创建工具(计算机应用程序)。所检验的假设是,根据这些新型工具,是否有可能生产出可以使用当前技术制造的功能性咬合板。本研究将传统咬合板与数字化设计并3D打印的咬合板进行了比较。所检验的假设是,制造出的咬合板在患者对舒适度的主观感受上是否存在差异。每种保守治疗都持续监测了十周。初步结果很有前景;在生产技术之间未发现统计学上的显著差异。