Department of Removable Prosthodontics, The Nippon Dental University School of Life Dentistry at Niigata, Niigata, Japan.
Dent Traumatol. 2022 Apr;38(2):149-155. doi: 10.1111/edt.12721. Epub 2021 Dec 13.
BACKGROUND/AIM: Polyolefin sheet mouthguards are usually formed in the same manner as ethylene-vinyl acetate sheet mouthguards. However, the heating condition of the polyolefin sheet for the pressure-forming process has not been determined. The aim of this study was to examine the appropriate heating condition for polyolefin sheet mouthguards when fabricated with the pressure-formed technique.
Mouthguard sheets of 3.0 mm polyolefin were pressure formed on working models at three heating temperatures: 90°C, 105°C, and 120°C. The thickness of the mouthguard was measured at the labial surface of the central incisor, and the buccal and occlusal surfaces of the first molar. The fit of the mouthguard was examined at the central incisor and the first molar by measuring the distance between the mouthguard and the cervical margin of the working model. Differences in the thickness and fit of the mouthguards according to the heating conditions and the measured regions were analyzed using two-way analysis of variance.
Mouthguard thickness varied among the measured regions of the central incisors and first molars (p < .01). The greatest thickness was found at the labial surface of the central incisor in mouthguards fabricated with the heating temperature of 90°C (p < .01). The greatest thickness was found in mouthguards fabricated with the heating temperature of 105°C at the buccal surface of the first molar (p < .01), and 105°C or 120°C at the occlusal surface of the first molar (p < .01). The fit was not significantly different among the three heating conditions both at the central incisor and the first molar.
The appropriate heating condition for pressure-formed mouthguards using polyolefin sheets was 90°C to maintain the mouthguard thickness at the anterior teeth area with proper fit.
背景/目的:聚烯烃片式防护牙套通常采用与乙烯-醋酸乙烯酯片式防护牙套相同的方式成型。然而,聚烯烃片用于压力成型过程的加热条件尚未确定。本研究旨在探讨聚烯烃片式防护牙套在采用压力成型技术制作时的合适加热条件。
将 3.0 毫米厚的聚烯烃片式防护牙套在三个加热温度下(90°C、105°C 和 120°C)在工作模型上进行压力成型。在切牙的唇面、第一磨牙的颊面和颌面测量防护牙套的厚度。通过测量工作模型的颈缘与防护牙套之间的距离,检查防护牙套在切牙和第一磨牙处的贴合度。根据加热条件和测量区域,使用双因素方差分析比较防护牙套的厚度和贴合度的差异。
防护牙套的厚度在切牙和第一磨牙的各个测量区域之间存在差异(p<0.01)。在 90°C 加热条件下制作的防护牙套在切牙的唇面处厚度最大(p<0.01)。在 105°C 加热条件下制作的防护牙套在第一磨牙的颊面处厚度最大(p<0.01),而在 105°C 或 120°C 加热条件下制作的防护牙套在第一磨牙的颌面处厚度最大(p<0.01)。在切牙和第一磨牙处,三种加热条件下的贴合度没有显著差异。
使用聚烯烃片制作压力成型防护牙套的合适加热条件为 90°C,以在前牙区域保持适当的厚度和贴合度。