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采用选择性去龋组织技术治疗的磨牙在生物力学行为方面存在显著的区域性差异:一项有限元研究。

Substantial regional differences in the biomechanical behavior of molar treated with selective caries tissue removal technique: a finite element study.

机构信息

Materials Science and Engineering, Technische Universität Berlin, Berlin, Germany.

Department of Oral Diagnostics, Digital Health and Health Services Research, Charité - Universitätsmedizin, Berlin, Germany.

出版信息

Dent Mater. 2021 Mar;37(3):e162-e175. doi: 10.1016/j.dental.2020.11.008. Epub 2021 Jan 7.

Abstract

OBJECTIVES

Selective caries removal (SCR) is recommended over non-selective removal for managing deep carious lesions to avoid pulp exposure and maintain pulp vitality. During SCR, residual carious dentin is left behind and sealed beneath the restoration. The biomechanical effects of such residual lesions on the restored tooth remain unclear and were assessed using finite element modeling (FEM).

METHODS

Based on μ-CT images of a healthy permanent human third molar, we developed five finite element models. Generic class I and II cavity restorations were modeled where residual lesions of variable sizes were either left or fully removed on occlusal and proximal surfaces. The cavities were restored with adhesive composite. All 3D-FE models were compared with a model of a healthy, non-treated molar. A vertical load of 100 N was applied onto the occlusal surface.

RESULTS

Regardless of the lesion size, in molars with occlusal lesions higher mean stresses were predicted along the filling-lesion interface than in all other models. The smallest occlusal lesion (Ø = 1 mm) resulted in the highest maximum stresses at the filling-lesion interface with large stress concentrations at the filling walls indicating failure risk. In conclusion, lesion site and extent are influencing parameters affecting the filling-lesion interactions and thus the biomechanical behavior of the tooth after SCR.

SIGNIFICANCE

Retaining carious lesions around the pulpal floor affects the deformation and stress states in tooth-filling complexes. The higher stresses observed in molars with occlusal lesions may affect restoration stability and longevity. Suprisingly, more extended occlusal lesions may provide a more favorable tooth performance than less extended ones. In contrast, in molars with proximal lesions the residual lesion had only limited effect on the tooth's biomechanical condition.

摘要

目的

选择性去腐(SCR)被推荐用于处理深龋坏病变,以避免暴露牙髓并维持牙髓活力,而非非选择性去腐。在 SCR 过程中,残余的腐坏牙本质会被留在修复体下方并被密封。然而,这种残余病变对修复牙的生物力学影响尚不清楚,本研究使用有限元建模(FEM)对此进行了评估。

方法

基于健康恒磨牙的 μ-CT 图像,我们建立了五个有限元模型。模型中构建了通用的 I 类和 II 类洞型修复体,其中在牙合面和近中面保留了不同大小的残余病变,或者完全去除了残余病变。这些窝洞均用牙本质粘结剂进行了修复。将所有的 3D-FE 模型与健康、未经处理的磨牙模型进行了比较。在牙合面施加了 100 N 的垂直载荷。

结果

无论病变大小如何,在有牙合面病变的磨牙中,填充物-病变界面的平均应力均高于其他所有模型。最小的牙合面病变(Ø = 1 mm)导致填充物-病变界面处的最大应力最高,并且在填充物壁处出现了较大的应力集中,表明存在失效风险。总之,病变部位和范围是影响填充物-病变相互作用以及 SCR 后牙齿生物力学行为的影响因素。

意义

保留牙髓底部周围的龋坏病变会影响牙-填充物复合体的变形和应力状态。在有牙合面病变的磨牙中观察到的更高的应力可能会影响修复体的稳定性和耐久性。令人惊讶的是,病变范围较大的牙合面病变可能比病变范围较小的牙合面病变提供更有利的牙齿性能。相比之下,在有近中面病变的磨牙中,残余病变对牙齿的生物力学状况仅有有限的影响。

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