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用于磨牙区的三种不同分体式牙种植体系统评估中的非线性生物力学评价与比较:一项有限元研究

Non-Linear Biomechanical Evaluation and Comparison in the Assessment of Three Different Piece Dental Implant Systems for the Molar Region: A Finite Element Study.

作者信息

Serrato-Pedrosa Jesus Alejandro, Villanueva-Fierro Ignacio, Marquet-Rivera Rodrigo Arturo, Hernández-Vázquez Rosa Alicia, Cruz-Lopez Salvador, Loera-Castañeda Verónica

机构信息

CIIDIR-Durango, Instituto Politécnico Nacional, Calle Sigma 119, Fraccionamiento 20 de Noviembre II, Durango C.P. 34220, Mexico.

Escuela Superior de Ingeniería Mecánica y Eléctrica Unidad Culhuacán, Instituto Politécnico Nacional, Av. Sta. Ana 1000, San Francisco Culhuacán, Colonia Culhuacán CTM V, Alcaldía Coyoacán, Ciudad de México C.P. 04440, Mexico.

出版信息

J Funct Biomater. 2025 Jan 9;16(1):17. doi: 10.3390/jfb16010017.

Abstract

The widely available options of different manufacturers in dental implant systems have complicated the selection criteria process for periodontists, necessitating careful consideration of various factors when selecting suitable solutions for individual patient needs. Optimal implant selection requires careful consideration of the patient-specific factors, implant design, and surgical technique. Understanding the biomechanical behavior of implant-tissue interactions is crucial for achieving successful and long-lasting implant therapy. To adequately address this issue and improve the rigorous selection criteria from a biomechanically numerical approach, this research aims to analyze the stress distribution fields, strain patterns, and load transfer displacements within the implant system and the implant-biological interface (gingival and bony tissues) of titanium three-piece to two-one-piece ceramic implant systems. Thus, three different commercially available dental implants designed to be placed in the jaw molar region were considered for evaluation through the finite element method under both oblique and occlusal loading conditions. The results have exhibited an increasing trend to highlight the outstanding behavior of two-piece ceramic implants to dissipate the stress distribution better (6 and 2 times lower than the three- and one-piece systems under occlusal loads and almost 5 and 1.3 times more efficient for oblique loading, respectively), minimize peak stress values (below 100 MPa), and reduce strain peak patterns compared with the other two evaluated designs. On the other hand, the effects generated in biological tissues are strongly associated with implant geometry features. This biomechanical approach could provide a promising strategy for predicting micro-strains and micromotion in implant system pieces and geometries. Hence, these findings contribute to a deeper understanding of the biomechanics spectrum in the behavior of dental implant systems and emphasize the importance of carefully selecting appropriate material systems for accurate patient-specific biomechanical performance.

摘要

牙科种植系统中不同制造商提供的多种选择,使牙周病医生的选择标准过程变得复杂,因此在为个体患者需求选择合适的解决方案时,需要仔细考虑各种因素。最佳种植体选择需要仔细考虑患者特定因素、种植体设计和手术技术。了解种植体与组织相互作用的生物力学行为对于实现成功且持久的种植治疗至关重要。为了充分解决这个问题并从生物力学数值方法改进严格的选择标准,本研究旨在分析钛三件式到两件式陶瓷种植系统的种植体系统内部以及种植体 - 生物界面(牙龈和骨组织)的应力分布场、应变模式和载荷传递位移。因此,考虑了三种设计用于下颌磨牙区域的市售牙科种植体,通过有限元方法在倾斜和咬合加载条件下进行评估。结果呈现出一种趋势,突出了两件式陶瓷种植体在更好地消散应力分布方面的出色表现(在咬合载荷下比三件式和一件式系统分别低6倍和2倍,在倾斜载荷下效率分别高出近5倍和1.3倍),与其他两种评估设计相比,最小化峰值应力值(低于100兆帕)并减少应变峰值模式。另一方面,在生物组织中产生的影响与种植体几何特征密切相关。这种生物力学方法可以为预测种植体系统部件和几何形状中的微应变和微运动提供一种有前景的策略。因此,这些发现有助于更深入地理解牙科种植系统行为中的生物力学谱,并强调为准确的患者特定生物力学性能仔细选择合适材料系统的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b67/11766260/3cf96991ddfd/jfb-16-00017-g001.jpg

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