Mizuhashi Fumi, Koide Kaoru
Department of Removable Prosthodontics, The Nippon Dental University School of Life Dentistry at Niigata, Nigata, Japan.
Dent Traumatol. 2018 Feb;34(1):46-50. doi: 10.1111/edt.12373. Epub 2017 Nov 24.
BACKGROUND/AIMS: Fabrication of mouthguards should be performed properly. However, the appropriate heating temperature for fabricating a pressure-formed mouthguard has not been determined. The aim of this study was to examine the influence of the heating temperature on the fabrication of a pressure-formed mouthguard.
Mouthguard sheets of 3.8 mm ethylene vinyl acetate were pressure-formed on a working model at three heating temperatures: 80, 100, 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 first molar by measuring the distance between the mouthguard and the cervical margin of the working model. Differences in the thickness of the mouthguards according to the heating temperatures were analyzed by two-way analysis of variance, and differences in the fit were analyzed by one-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 and the buccal surface of the first molar in mouthguards fabricated at the heating temperature of 120°C (P < .01). Mouthguard fit varied among the heating temperatures of the central incisors, and the greatest fit was obtained in mouthguards fabricated at the heating temperatures of 100 and 120°C (P < .01).
Heating the ethylene vinyl acetate sheet until the temperature reached 120°C was the best fabrication method to maintain the pressure-formed mouthguard thickness with proper fit.
背景/目的:护齿器的制作应正确进行。然而,用于制作压膜护齿器的合适加热温度尚未确定。本研究的目的是探讨加热温度对压膜护齿器制作的影响。
将3.8毫米厚的乙烯醋酸乙烯酯护齿器片材在三个加热温度(80、100和120°C)下在工作模型上进行压膜。在中切牙唇面、第一磨牙颊面和咬合面测量护齿器的厚度。通过测量护齿器与工作模型颈缘之间的距离,在中切牙和第一磨牙处检查护齿器的贴合度。采用双向方差分析分析不同加热温度下护齿器厚度的差异,采用单向方差分析分析贴合度的差异。
中切牙和第一磨牙测量区域的护齿器厚度各不相同(P <.01)。在120°C加热温度下制作的护齿器中,中切牙唇面和第一磨牙颊面的厚度最大(P <.01)。中切牙不同加热温度下护齿器的贴合度各不相同,在100和120°C加热温度下制作的护齿器贴合度最佳(P <.01)。
将乙烯醋酸乙烯酯片材加热至120°C是保持压膜护齿器厚度并使其贴合度合适的最佳制作方法。