基于CBCT的Max wire®合金锉治疗大弯曲根管成形能力的数字分析

B. Arıcan, A. Ateş, Cansu Büyük, Elif Çiftçioğlu
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引用次数: 1

摘要

目的:应用锥形束ct (cone-beam computed tomography, CBCT)评价MaxWire®合金锉在治疗不同根尖大小的大弯曲根管中的成形能力。材料与方法:将45颗腭根中等弯曲(20°~ 30°)的上颌第一磨牙分为3组,采用BioRace NiTi系统分别建立根尖直径为#35(1组)、#40(2组)和#50(3组)的大根管。然后,用MaxWire合金锉XP-endo Shaper®进行重塑。使用CBCT扫描仪在置入前后对椎管进行扫描。计算离根尖2、3、4 mm处的根管运输(CT)、居中比(CR)、增加预备面积% (PA)和增加预备轮廓% (PO)。数据以P < 0.05进行统计学分析。结果:在所有根尖大小和所有三个水平上,PO的平均增加都有显著差异。在3 mm和4 mm水平,峰值PA和峰值PO均在根尖尺寸为35时达到最大值,而在2 mm水平,峰值PA和峰值PO均在根尖尺寸为40时达到最大值。CT和CR在距根尖2 mm处各组间差异无统计学意义。结论:该器械采用Max Wire合金技术,可以清洁和接触大弯曲根管的牙本质壁。CBCT的小视场和小体素尺寸也可用于牙髓学整形能力的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A CBCT BASED DIGITAL ANALYSIS OF SHAPING ABILITY OF MAX WIRE®ALLOY FILE IN THE TREATMENT OF LARGE AND CURVED ROOT CANALS
Aim: To evaluate the limits of the shaping ability of MaxWire® alloy file in the treatment of pre-created large and curved root canals with different apical sizes by using cone-beam computed tomography (CBCT). Materials and methods: Forty-five permanent maxillary first molars with moderately curved palatal roots (20°-30°) were divided into three groups, and large root canals were created with apical diameter #35 (Group 1), #40 (Group 2) or #50 (Group 3) by using BioRace NiTi System. Then, they were reshaped with the MaxWire alloy file, XP-endo Shaper®. Canals were scanned before and after instrumentation by using the CBCT scanner. Canal transportation (CT), centering ratio (CR), % increased prepared area (PA), and % increased prepared outline (PO) at 2, 3, and 4 mm from the apex were calculated. Data were statistically analyzed at P < 0.05. Results: There was a significant difference in the mean increase in PO in all apical sizes and all three levels. At both 3 mm and 4 mm levels the maximum PA and PO were achieved in apical size 35, while at 2 mm level the maximum values were obtained in apical size 40. There was no statistically significant difference in CT and CR within groups at 2 mm distance from the apex. Conclusion: Max Wire alloy technology of this novel instrument makes it possible to clean and touch the dentin walls of large and curved root canals. Small FOV and small voxel size of CBCT could also be used in shaping ability studies in endodontics.
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