Lin Pei-Ju, Chuang Ming-Chuen, Chang Szu-Chung
Department of Industrial Design, Institute of Applied Arts, National Chiao Tung University, Hsinchu, Taiwan.
Division of Periodontology of CM Dental Clinic, Taichung, Taiwan.
IET Nanobiotechnol. 2018 Oct;12(7):973-980. doi: 10.1049/iet-nbt.2017.0232.
Patients with serious gingivitis or periodontal diseases suffer from receding gums. Brushing teeth with a toothbrush may result in bleeding gums and new wounds, which increases the difficulty of removing facultative anaerobes from gum pockets, to decrease the damage inflicted on gums, this study proposed a cleaning device that can generate and emit oxygen microbubbles for eliminating facultative anaerobes in the mouth cavity. In this study, the authors conducted simulations with a denture to investigate the efficacy of using this method to remove facultative anaerobes. In this research for the optimal device design, several variables were manipulated including rotation speeds of the bubble generator, different nozzle diameters, and different numbers of nozzle holes. The results revealed that the device is effective in removing facultative anaerobes; moreover, of all design variables, the number of nozzle holes was the factor having the largest effect on anaerobe removal, as it influenced the flow volume and oxygen content of the discharge: the greater the number of nozzles, the greater the flow volume, oxygen content, and efficacy of anaerobe removal.
患有严重牙龈炎或牙周疾病的患者会出现牙龈萎缩。用牙刷刷牙可能会导致牙龈出血和新的伤口,这增加了从牙龈袋中清除兼性厌氧菌的难度。为了减少对牙龈的损伤,本研究提出了一种能够产生并释放氧气微泡以消除口腔中兼性厌氧菌的清洁装置。在本研究中,作者使用假牙进行模拟,以研究使用该方法清除兼性厌氧菌的效果。在这项关于优化装置设计的研究中,对几个变量进行了操控,包括气泡发生器的转速、不同的喷嘴直径和不同的喷嘴孔数量。结果表明,该装置在清除兼性厌氧菌方面是有效的;此外,在所有设计变量中,喷嘴孔的数量是对厌氧菌清除影响最大的因素,因为它影响了排出物的流量和氧气含量:喷嘴数量越多,流量、氧气含量和厌氧菌清除效果就越好。