Sarac Rūta, Helbig Julia, Dräger Juliane, Jost-Brinkmann Paul-Georg
Department of Orthodontics, Dentofacial Orthopedics and Pedodontics, Charité-Universitätsmedizin, Center for Dental and Craniofacial Sciences, Aßmannshauser Straße 4-6, D-14197 Berlin, Germany.
Materials (Basel). 2019 Oct 28;12(21):3535. doi: 10.3390/ma12213535.
This in-vitro study compares the shock absorption qualities of five mouthguard designs measured with a triangulation laser sensor during small hard object collisions. The aim was to investigate the impact of different labial designs on mouthguard performance.
Five different custom-fabricated ethylene vinyl acetate (EVA) types of mouthguards with varying thickness and different labial inserts (polyethylene terephthalate glycol-modified (PETG), nylon mesh, air space) were tested with a triangulation laser sensor during different energy blows, generated with a pendulum testing device. The pendulum hits were applied to the center of a pivoted tooth crown in a custom-built upper jaw model. Measurements were executed with the mouthguards on the model and with no mouthguard as a negative control.
Tooth deflection was reduced with all mouthguards in comparison to no mouthguard. Increasing mouthguard thickness improved the mouthguards' shock absorption capacities. Also, adding labial inserts increased their preventive qualities in ascending order: Mouthguard with a soft insert (nylon mesh), a hard insert (PETG), air space plus a hard insert (PETG).
Increasing EVA foil thickness of a mouthguard, increasing labial thickness, and adding labial inserts (soft, stiff and air space) improve mouthguard shock absorption capabilities during small hard object collisions, thereby improving dental trauma prevention.
本体外研究比较了五种护齿器设计在小硬物碰撞时通过三角测量激光传感器测量的减震性能。目的是研究不同唇侧设计对护齿器性能的影响。
使用摆锤测试装置在不同能量冲击下,用三角测量激光传感器测试五种不同定制的乙烯-醋酸乙烯酯(EVA)类型的护齿器,这些护齿器厚度不同且唇侧插入物不同(聚对苯二甲酸乙二醇酯改性(PETG)、尼龙网、气腔)。摆锤撞击施加于定制上颌模型中可枢转牙冠的中心。在模型上佩戴护齿器和不佩戴护齿器作为阴性对照进行测量。
与不佩戴护齿器相比,所有护齿器都能减少牙齿偏转。增加护齿器厚度可提高其减震能力。此外,添加唇侧插入物可按升序提高其防护性能:带有软插入物(尼龙网)的护齿器、带有硬插入物(PETG)的护齿器、气腔加硬插入物(PETG)的护齿器。
增加护齿器的EVA箔厚度、增加唇侧厚度以及添加唇侧插入物(软质、硬质和气腔)可提高护齿器在小硬物碰撞时的减震能力,从而改善牙齿创伤预防。