传统与 3D 打印带环空间维持器:断裂强度分析。

IF 3.2 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Sakshi Metkar, Bhagyashree Thakur, Dian Agustin Wahjuningrum, Ali A Assiry, Khalid Alshamrani, Sudhir Rama Varma, Ajinkya M Pawar, Mohmed Isaqali Karobari
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引用次数: 0

摘要

乳牙过早脱落是儿童牙科的常见现象,通常需要使用空间维持器来防止并发症。传统的空间保持器,如带状和环形空间保持器(BLSM),已经得到了广泛的应用,但其制作方法是传统的。随着技术的进步,三维(3D)打印已经成为制造牙科器械(包括空间维护器)的一种有前途的替代方案。本研究旨在评估和比较使用不锈钢制造的传统带和环空间维持器(C-BLSMs)与使用增材制造技术制造的3D打印BLSMs的断裂强度。制作了15个C-BLSM和15个3D打印blsm,并在通用试验机上进行了断裂强度测试。根据已有文献确定混合牙列的最大咬合力。比较两组平均骨折阻力进行统计学分析。3D打印blsm的平均断裂抗力(308.53 N)明显高于c - blsm的平均断裂抗力(130.85 N),差异有统计学意义(p
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conventional vs. 3D printed band and loop space maintainers: a fracture strength analysis.

Premature loss of primary teeth is a common occurrence in pediatric dentistry and often necessitates the use of space maintainers to prevent complications. Traditional space maintainers, such as band and loop space maintainers (BLSM), have been widely used, but are fabricated using conventional methods. With advancements in technology, three-dimensional (3D) printing has emerged as a promising alternative for fabricating dental appliances including space maintainers. This study aimed to evaluate and compare the fracture strengths of conventional band and loop space maintainers (C-BLSMs) fabricated using stainless steel with that of 3D printed BLSMs manufactured using additive manufacturing techniques. Fifteen C-BLSM and fifteen 3D printed BLSMs were fabricated and subjected to fracture-strength testing using a universal testing machine. The maximum occlusal bite force in the mixed dentition was determined based on established literature. Statistical analysis was performed to compare the mean fracture resistance between the two groups. The mean fracture resistance of the 3D printed BLSMs was significantly higher (308.53 N) than that of C-BLSMs (130.85 N). This difference was statistically significant (p < 0.05), highlighting the superior mechanical properties of 3D printed BLSMs. Three-dimensional printing technology offers significant advantages in terms of fracture strength compared with conventional fabrication methods for BLSMs.

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