Baruwa Abayomi Omokeji, Chasqueira Filipa, Arantes-Oliveira Sofia, Caramês João, Marques Duarte, Portugal Jaime, Martins Jorge N R
Faculdade de Medicina Dentária, Universidade de Lisboa, 1600-277 Lisboa, Portugal.
Instituto Universitário Egas Moniz, 2829-511 Monte da Caparica, Portugal.
Dent J (Basel). 2024 Apr 10;12(4):98. doi: 10.3390/dj12040098.
Small-sized stainless steel hand files are conventionally employed in root canal treatment procedures for canal scouting and for glide path establishment, owing to their superior flexibility and proficiency in navigating confined spaces. Given the diversity of brands available in the market, there exists potential variability in their physical characteristics, thereby influencing clinical performance. Consequently, this study aims to conduct a comparative analysis of the design, metallurgy, and mechanical characteristics among seven stainless steel hand file brands across ISO sizes 06, 08, and 10. A total of 315 new 25 mm length stainless steel hand files with apical sizes of 0.06, 0.08, and 0.10 from seven distinct brands were included in the study. A meticulous inspection of all instruments was undertaken to identify any structural deformations that might render them ineligible for the study. The design inspection involved the random selection of instruments from each group, which were examined under various microscopes, including a dental operating microscope, optical microscope, and scanning electron microscope. Furthermore, two instruments from each group underwent energy-dispersive X-ray spectroscopy analysis for elemental composition documentation. Mechanical tests were conducted to evaluate the instruments' resistance to lateral deformation (buckling) and their microhardness. Statistical analysis was executed using the nonparametric Mood's median test, with a predetermined significance level of 0.05. Regarding the instruments design, all files exhibited an active blade length ranging from 16 to 17 mm. However, variations were observed in the number of spirals, tip designs, and sizes, with the API K-File notably larger in sizes 0.06 and 0.08 compared to the other instruments. Despite uniform elements composition, differences in geometric features and mechanical properties were evident. Concerning buckling strength, the API K-File demonstrated superior performance across all tested sizes, while the Dentsply ReadySteel, SybronEndo, and Mani K-Files exhibited lower results ( < 0.05). In microhardness assessments, both the API and Oro K-Files displayed the lowest outcomes, with medians of 531 HVN and 532 HVN, respectively, whereas the SybronEndo K-File exhibited the highest microhardness (657 HVN). Despite similar metallurgical composition, the observed distinctions in geometric features and mechanical properties underscore the impact of the manufacturing process on the characteristics of glide path stainless steel endodontic files. These disparities may ultimately influence their clinical performance.
小型不锈钢手动根管锉通常用于根管治疗过程中的根管探查和引导通路建立,因为它们具有出色的柔韧性,并且在狭窄空间中操作熟练。鉴于市场上品牌众多,其物理特性可能存在差异,从而影响临床性能。因此,本研究旨在对7个不锈钢手动根管锉品牌在ISO 06、08和10号尺寸下的设计、冶金和机械特性进行对比分析。该研究共纳入了来自7个不同品牌的315支新的25毫米长、根尖尺寸为0.06、0.08和0.10的不锈钢手动根管锉。对所有器械进行了细致检查,以确定是否存在任何可能使其不符合研究要求的结构变形。设计检查包括从每组中随机选择器械,在各种显微镜下进行检查,包括牙科手术显微镜、光学显微镜和扫描电子显微镜。此外,每组选取两支器械进行能量色散X射线光谱分析,以记录元素组成。进行了机械测试,以评估器械的抗侧向变形(弯曲)能力及其显微硬度。使用非参数Mood中位数检验进行统计分析,预定显著性水平为0.05。关于器械设计,所有锉的有效刃长均在16至17毫米之间。然而,在螺旋数、尖端设计和尺寸方面存在差异,与其他器械相比,API K锉在0.06和0.08号尺寸下明显更大。尽管元素组成均匀,但几何特征和机械性能的差异明显。关于弯曲强度,API K锉在所有测试尺寸下均表现出卓越性能,而登士柏ReadySteel、SybronEndo和马尼K锉的结果较低(<0.05)。在显微硬度评估中,API和奥罗K锉的结果最低,中位数分别为531 HVN和532 HVN,而SybronEndo K锉的显微硬度最高(657 HVN)。尽管冶金成分相似,但观察到的几何特征和机械性能差异凸显了制造工艺对引导通路不锈钢根管锉特性的影响。这些差异最终可能会影响它们的临床性能。