Abosree Esraa S, Gamal Reem, Yassin Mazen M, Gomaa Yasser F, El-Abden Samy Z, Said Ashraf M
Biomaterials department, Faculty of Dentistry, Minia University, Minia, 61519, Egypt.
School of Biomedical Engineering, Medical School, Shenzhen University, Shenzhen, 518060, China.
Ann Biomed Eng. 2025 Feb;53(2):493-506. doi: 10.1007/s10439-024-03639-1. Epub 2024 Nov 5.
The primary objective of this study is to emphasize the importance of maintaining optimal oral health through regular toothbrushing practices. To achieve this objective, a custom-designed electromechanical toothbrush simulator device was developed. This innovative tool enables researchers to investigate the impact of abrasive-based whitening toothpastes on enamel surface roughness compared to brushing without toothpaste. The device design is composed of multiple systems, including mechanical, motorization, and toothpaste irrigation components. The device incorporates various components, including mechanical, motorization, and toothpaste irrigation systems. Specifically, the mechanical aspect comprises fabricated metal parts, 3D printed elements, and a load cell for measuring brushing force. The motorization section integrates a microcontroller and a stepper motor, allowing for the adjustment of brushing cycles and speed. Furthermore, the toothpaste irrigation system employs a pump with adjustable speed, along with a toothpaste canister and a waste receptacle. By providing a controlled environment for evaluating the effects of different toothpaste formulations on enamel integrity, this simulator device contributes significantly to advancements in oral care research and product development.
本研究的主要目的是强调通过定期刷牙保持最佳口腔健康的重要性。为实现这一目标,开发了一种定制设计的电动牙刷模拟器装置。与不使用牙膏刷牙相比,这种创新工具使研究人员能够研究含研磨剂的美白牙膏对牙釉质表面粗糙度的影响。该装置设计由多个系统组成,包括机械、电动和牙膏冲洗部件。该装置包含各种部件,包括机械、电动和牙膏冲洗系统。具体而言,机械部分包括制造的金属部件、3D打印元件以及用于测量刷牙力的称重传感器。电动部分集成了一个微控制器和一个步进电机,可调节刷牙周期和速度。此外,牙膏冲洗系统采用了一个速度可调的泵,以及一个牙膏罐和一个废物容器。通过提供一个可控环境来评估不同牙膏配方对牙釉质完整性的影响,这种模拟器装置对口腔护理研究和产品开发的进展做出了重大贡献。