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基于下颌运动轨迹数据指导的数字化全冠咬合面精度评价
引用本文:徐欣蕊,余润平,袁芸,张洪铭,黄慧.基于下颌运动轨迹数据指导的数字化全冠咬合面精度评价[J].上海口腔医学,2023,32(1):58-62.
作者姓名:徐欣蕊  余润平  袁芸  张洪铭  黄慧
作者单位:上海交通大学医学院附属第九人民医院 口腔修复科,上海交通大学口腔医学院,国家口腔医学中心, 国家口腔疾病临床医学研究中心,上海市口腔医学重点实验室,上海市口腔医学研究所,上海 200011
基金项目:国家自然科学基金(81771105)
摘    要:目的 :定量比较基于下颌运动轨迹数据及平均值虚拟■架指导设计的全冠修复体咬合面的精度。方法 :选择全口恒牙列完整、符合入组标准的15名志愿者作为研究对象,其中,男9例,女6例,平均年龄22~30岁。分别利用下颌运动轨迹数据及平均值虚拟■架在修复设计软件中指导数字化全冠的咬合面设计,并分别与原始天然牙咬合面进行形态偏差比较。采用SPSS 25.0软件包对数据进行统计学分析。结果:基于下颌运动轨迹数据及平均值虚拟■架指导设计的修复体咬合面总体偏差为平均正向偏差(269.9±63.1)和(318.7±51.3)μm,平均负向偏差(-175.8±78.2)和(-253.7±65.6)μm,均方根值(root mean square,RMS)(267.1±84.9)和(304.1±82.2)μm。修复体上解剖特征点在垂直方向上与原始天然牙咬合面相应解剖特征点的距离为近中颊尖(197.6±86.2)和(288.0±79.6)μm,远中颊尖(176.3±85.3)和(297.7±63.2)μm,近中舌尖(171.6±62.4)和(246.4±62.8)μm,远中舌尖(166.2±64.6)和(232...

关 键 词:下颌运动轨迹  咬合面形态  CAD/CAM
收稿时间:2021-11-11
修稿时间:2022-01-19

Assessment of the reproducibility of occlusal morphology for digital full crown designed by mandibular trajectory data
XU Xin-rui,YU Run-ping,YUAN Yun,ZHANG Hong-ming,HUANG Hui.Assessment of the reproducibility of occlusal morphology for digital full crown designed by mandibular trajectory data[J].Shanghai Journal of Stomatology,2023,32(1):58-62.
Authors:XU Xin-rui  YU Run-ping  YUAN Yun  ZHANG Hong-ming  HUANG Hui
Institution:Department of Prosthodontics, Shanghai Ninth People’s Hospital, Shanghai Jiao Tong University School of Medicine;; College of Stomatology, Shanghai Jiao Tong University; National Center for Stomatology; National Clinical Research Center for Oral Diseases; Shanghai Key Laboratory of Stomatology; Shanghai Research Institute of Stomatology. Shanghai 200011, China
Abstract:PURPOSE: To metrically assess the reproducibility of mandibular trajectory data and mean frame parameter in guiding the design of occlusal morphology of prosthesis. METHODS: Fifteen subjects with complete dentition were selected, including 6 females and 9 males, with an average age of 22-30 years old. The mandibular trajectory data and mean frame parameter were used to guide the design of occlusal morphology of the prosthesis in the CAD system, then the occlusal morphology was compared to the original natural teeth. The data were statistically analyzed by SPSS 25.0 software package. RESULTS: The general deviation of occlusal morphology between the prosthesis guided by mandibular trajectory data and mean frame parameter with the natural teeth was as follows: mean positive distance was (269.9±63.1) μm, (318.7±51.3) μm; mean negative distance was (-175.8±78.2) μm, (-253.7±65.6) μm; root mean square (RMS) was (267.1±84.9) μm and (304.1±82.2) μm. The vertical distance on mesial buccal cusp was (197.6±86.2) μm and (288.0±79.6) μm,distal buccal cusp was (176.3±85.3) μm and (297.7±63.2) μm, mesial lingual cusp was (171.6±62.4) μm and (246.4±62.8) μm, distal lingual cusp was (166.2±64.6) μm and (232.5±70.7) μm, central fossa was (104.9±42.2) μm and (219.1±69.1) μm. RMS, mean(-) and vertical differences of central fossa and distal buccal cusp were significantly different(P<0.05). CONCLUSIONS: The occlusal morphology of the prosthesis designed under the guidance of mandibular trajectory data and mean frame parameter both have significant differences with natural occlusion, but the deviation guided by mandibular trajectory data is lower.
Keywords:Mandibular trajectory  Occlusal morphology  CAD/CAM  
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