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髁突旋转对下颌前突患者颞下颌关节应力环境的影响。

Effect of condylar rotation on the stress environment of the temporomandibular joint in patients with mandibular protrusion.

机构信息

Key Lab for Biomechanical Engineering of Sichuan Province, Sichuan University, Chengdu, China; Sichuan University Yibin Park, Yibin Institute of Industrial Technology, Yibin, China.

Key Lab for Biomechanical Engineering of Sichuan Province, Sichuan University, Chengdu, China; Sichuan University Yibin Park, Yibin Institute of Industrial Technology, Yibin, China.

出版信息

J Stomatol Oral Maxillofac Surg. 2024 Sep;125(5S1):101997. doi: 10.1016/j.jormas.2024.101997. Epub 2024 Jul 30.

Abstract

PURPOSE

The study aims to analyse the effects of condylar rotation on the biomechanical environment of the TMJ after bilateral sagittal split ramus osteotomy (BSSRO) through the finite element method (FEM).

METHODS

Thirteen patients with mandibular prognathism and twenty-three normal subjects were recruited. The three-dimensional (3D) models were reconstructed. 13 representative morphological parameters were measured for comparison. A patient was selected to perform virtual BSSRO surgery by rotating the condyles in MIMICS. The preoperative and postoperative 3D models of the patient were subsequently imported into ABAQUS for finite element analysis. The preoperative and postoperative stresses and joint spaces in the TMJs were investigated.

RESULTS

The maxillofacial morphologies of the patients with mandibular protrusion was significantly different from those of the asymptomatic subjects (P<.05). Stresses in the postoperative group were lower than those in the preoperative group. The rotation of the condyle could cause the variations in stress levels and joint spaces within the TMJs. Inward and upward rotation of the condyle was associated with higher stress in the TMJ, whereas the lowest stress was observed when the condyle remained stationary following surgical intervention.

SIGNIFICANCE

Lateral, medial and superior joint spaces were more related to the stresses in the TMJs. The condyle should be kept in place as much as possible to avoid disrupting the balance of the TMJ in patients with mandibular protrusion.

摘要

目的

本研究旨在通过有限元法(FEM)分析双侧矢状劈开截骨术(BSSRO)后髁突旋转对颞下颌关节(TMJ)生物力学环境的影响。

方法

纳入 13 例下颌前突患者和 23 例正常受试者,重建三维(3D)模型,测量 13 个有代表性的形态学参数进行比较。选择一名患者在 MIMICS 中旋转髁突进行虚拟 BSSRO 手术,随后将患者术前和术后的 3D 模型导入 ABAQUS 进行有限元分析,研究 TMJ 的术前和术后的应力和关节间隙。

结果

下颌前突患者的颌面形态与无症状受试者明显不同(P<.05)。术后组的应力低于术前组。髁突的旋转会导致 TMJ 内的应力水平和关节间隙发生变化。髁突向内和向上旋转会导致 TMJ 内的应力增加,而髁突在手术后保持静止时,应力最低。

意义

外侧、内侧和上关节间隙与 TMJ 内的应力更相关。髁突应尽可能保持在原位,以避免破坏下颌前突患者 TMJ 的平衡。

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