广州医药 ›› 2021, Vol. 52 ›› Issue (4): 106-111.DOI: 10.3969/j.issn.1000-8535.2021.04.023

• 论著 • 上一篇    下一篇

软弹性咬合板对磨牙症患者牙周组织应力的影响

赵俪月   

  1. 广州市第一人民医院口腔科(广州 510180)
  • 出版日期:2021-07-20 发布日期:2021-11-23
  • 作者简介:赵俪月,E-mail:zhaoly222@qq.com
  • 基金资助:
    广东省科技计划项目(2020A1414040003)

Effect of elastic soft occlusal splint on periodontal tissue stress:a finite element analysis

ZHAO Liyue   

  1. Department of Stomatology,Guangzhou First People's Hospital,Guangzhou 510180,China
  • Online:2021-07-20 Published:2021-11-23

摘要: 目的 观察佩戴软弹性咬合板对磨牙症患者牙周组织应力的影响。方法 创建颌骨和牙列的三维有限元模型,对模型右侧上、下颌的每颗牙加载与牙体长轴呈0°、45°、90°的成人最大咬合力,分析使用不同厚度软弹性咬合板(1 mm、2 mm)后,牙槽骨及牙周膜所受应力的大小及分布,设不使用软弹性咬合板组做阴性对照。结果 在各咬合力加载角度下,与对照组相比,1 mm软弹性咬合板对牙周膜应力的缓冲效率平均为16%,对牙槽骨应力的缓冲效率平均为15%。2 mm软弹性咬合板对牙周膜及牙槽骨应力缓冲效率平均为26%及25%。在所有组别中,牙周组织的最大应力均集中于颊、舌侧牙槽嵴顶附近,但使用软弹性咬合板后应力集中范围减少,应力分布更均匀。结论 软弹性咬合板可以作为咬合应力的缓解装置,它有助于消减磨牙症产生的额外应力对牙周组织造成的破坏。

关键词: 磨牙症, 咬合板, 生物力学, 有限元方法, 牙周组织

Abstract: Objective To observe the effect of wearing an elastic soft occlusal splint on the stress of periodontal tissue in patient with bruxism. Methods A three-dimensional finite element model of jaw and dentition was created. Each tooth in the test area was loaded with the maximum adult occlusal force at 0°, 45°, and 90° with respect to the long axis of the tooth. 1 mm and 2 mm elastic soft occlusal splint were used, and the stress of the alveolar bone and periodontal ligament with and without elastic soft occlusal splint were analyzed and compared. Results Compared with the control group, 1 mm splint reduced the periodontal ligament stress of patient by an average of 16% and the alveolar bone stress by an average of 15%. After wearing a 2 mm splint, the patient's periodontal ligament and alveolar bone stress were reduced by 26% and 25% respectively. In all groups, the maximum stress of the periodontal tissue was on the buccal and lingual alveolar ridge crest, but the stress distribution was more uniform after using the soft occlusal splint. Conclusion The soft occlusal splint can be used to relieve occlusal stress and help eliminate the damage to periodontal tissue caused by the extra stress in bruxism.

Key words: Bruxism, Occlusal splint, Biomechanics, Finite element method, Periodontal tissue