咀嚼力
下颌骨(节肢动物口器)
医学
颞下颌关节
韧带
口腔正畸科
极限抗拉强度
牙周纤维
解剖
咬合力商
牙科
材料科学
生物
植物
冶金
属
作者
Jinlin Song,Zhihe Zhao,Linlin Hu,Wentao Jiang,Fan Yang,J Chen
出处
期刊:PubMed
日期:2001-02-01
卷期号:19 (1): 43-5
被引量:3
摘要
This study aimed to provide some biomechanical references for the clinical use and improvement of Herbst appliance.The three-dimensional model of the 'Temporomandibular joint mandible Herbst appliance system' was set up by SUPER SAP software (version 9.3). On this model, the passive tensile in the masticatory muscles and ligaments were analyzed under various bit reconstruction designed according to specified advanced displacement and vertical bite opening.When Herbst appliance drove the mandible forward, there was not any tensile in the medial, lateral pterygoid and the collateral ligament, while the temporalis, the deep paret of masseter, the stylomandibular ligament, and the sphenomandibular ligament were passively drawn. Under various bite reconstruction, the passive tensile in the medial temporalis, the posterior temporalis, the stylomandibular ligament and the sphenomandibular ligament increased with the amount of the advancement of the mandible; The passive tensile in the posterior temporalis and the deep part of masseter increased with the amount of vertical bite opening of the mandible.The StL, SpL, PT and AT played an important role in functional reconstruction of mandible by Herbst. All five group of bite reconstruction (3-7 mm advancement, 4-2 mm vertical bite opening of the mandible) designed by this study can be selected in clinic according to the patient's capability of adaptation, the extent of malocclusion and the potential and direction of growth.
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