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五种数值方法评估完整牙周组织体外正畸移动下牙髓和神经血管束的缺血风险

Five Numerical Methods to Assess the Ischemic Risks in Dental Pulp and Neuro-Vascular Bundle Under Orthodontic Movements in Intact Periodontium In Vitro.

作者信息

Moga Radu-Andrei, Olteanu Cristian Doru, Delean Ada Gabriela

机构信息

Department of Cariology, Endodontics and Oral Pathology, School of Dental Medicine, University of Medicine and Pharmacy Iuliu Hatieganu, Str. Motilor 33, 400001 Cluj-Napoca, Romania.

Department of Orthodontics, School of Dental Medicine, University of Medicine and Pharmacy Iuliu Hatieganu, Str. Avram Iancu 31, 400083 Cluj-Napoca, Romania.

出版信息

Dent J (Basel). 2024 Dec 27;13(1):15. doi: 10.3390/dj13010015.

Abstract

: Dental pulp and its neuro-vascular bundle (NVB) are among the least studied dental tissues. This study identified the best method for evaluating ischemic risks in the dental pulp and NVB of healthy lower premolars under orthodontic forces and in intact periodontium. : Nine 3D models of the second lower premolar were reconstructed based on the CBCT scans from nine patients. Nine patients (CBCT scan) were subjected to 3 N of intrusion, extrusion, rotation, tipping, and translation. Five numerical methods, Tresca, von Mises (VM), Maximum and Minimum Principal, and hydrostatic pressure were used to biomechanically assess (totaling 225 simulations) the color-coded stress distribution in pulp and NVB. The results (both qualitative and quantitative) were correlated with the physiological maximum hydrostatic pressure (MHP) and known tissular biomechanical behavior. : All five methods displayed quantitative amounts of stress lower than MHP and did not seem to induce any ischemic risks for the NVB and pulp of healthy intact premolars. Among the five movements, rotation seemed the most stressful, while translation was the least stressful. The NVB displayed higher amounts of stress and tissular deformations than the pulp, seeming to be more exposed to ischemic risks. Higher tissular deformations are visible in NVB during intrusion and extrusion, while pulpal coronal stress is visible only during translation. Only the VM and Tresca methods showed a constant stress display pattern for all five movements. The other three methods displayed various inconsistencies related to the stress distribution pattern. : Only the Tresca and VM methods can provide correct qualitative and quantitative data for the analysis of dental pulp and NVB. The other three methods are not suitable for the study of the pulp and NVB.

摘要

牙髓及其神经血管束(NVB)是研究最少的牙体组织之一。本研究确定了评估健康下颌前磨牙在正畸力作用下及牙周组织完整时牙髓和NVB缺血风险的最佳方法。

基于9名患者的CBCT扫描重建了9个下颌第二前磨牙的三维模型。9名患者(CBCT扫描)分别接受3N的压低、伸长、旋转、倾斜和平移力。采用Tresca、von Mises(VM)、最大和最小主应力以及静水压力这五种数值方法对牙髓和NVB中的彩色编码应力分布进行生物力学评估(共225次模拟)。结果(包括定性和定量)与生理最大静水压力(MHP)和已知的组织生物力学行为相关。

所有五种方法显示的应力定量值均低于MHP,似乎不会对健康完整前磨牙的NVB和牙髓造成任何缺血风险。在这五种运动中,旋转似乎应力最大,而平移应力最小。NVB比牙髓显示出更高的应力和组织变形量,似乎更容易受到缺血风险的影响。在压低和伸长过程中,NVB中可见更高的组织变形,而牙髓冠部应力仅在平移过程中可见。只有VM和Tresca方法对所有五种运动都显示出恒定的应力显示模式。其他三种方法在应力分布模式方面表现出各种不一致性。

只有Tresca和VM方法能够为牙髓和NVB的分析提供正确的定性和定量数据。其他三种方法不适用于牙髓和NVB的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eaf1/11763361/40038d92fc31/dentistry-13-00015-g001.jpg

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