Comparative evaluation of debris and irrigation extruded apically using different design of needles and penetration depth - An In Vitro study.

Q3 Dentistry
Maha A Habeeb
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引用次数: 0

Abstract

Aim: : The aim of this study was to measure the amount of material extruded in the periapical area using three irrigation needles (Max-I-Probe, NaviTip Fx and IrriFlex flexible needle).

Materials and methods: : Mandibular premolars were selected for this study and glass vials were used to gather the extruded debris and they were preweighed. The samples were divided into two groups: Group A (1 mm penetration of needle from working length), which was subdivided into three subgroups: Subgroup A1: Irrigation was made by Max-I-Probe. Subgroup A2: Irrigation was made by NaviTip Fx. Subgroup A3: Irrigation was made by IrriFlex flexible needle. Group B (3 mm penetration of needle), which was subdivided into three subgroups: Subgroup B1: Irrigation was made by Max-I-Probe. Subgroup B2: Irrigation was made by NaviTip Fx. Subgroup B3: Irrigation was made by IrriFlex flexible needle. XP-endo Shaper was used for chemomechanical preparation. After removal from vials, the teeth were incubated and then removed from the incubator and weighed again three times. The average of the readings was taken. Analysis of variance (ANOVA) and least significance difference tests were applied to analyse data.

Results: : All of the needles caused debris extrusion. There was a significant difference between groups (P ≤ 0.001) according to the depth of penetration. The lowest value for debris was observed in subgroup B3 while subgroup A2 had shown the highest mean.

Conclusion: Results revealed that the design and depth of needles significantly affected the debris extrusion. Using more flexible needles and shorter penetration depth for irrigation so that we don't need to push the needles so far apically.

使用不同设计的针头和穿刺深度对根尖挤压碎屑和灌溉进行比较评估--一项体外研究。
研究目的本研究旨在测量使用三种灌洗针(Max-I-Probe、NaviTip Fx 和 IrriFlex 弹性针)在根尖周围挤出的材料量:本研究选取下颌前磨牙,用玻璃瓶收集挤出的碎屑并预先称重。样本分为两组:A 组(针从工作长度穿入 1 毫米),又分为三个亚组:子组 A1:用 Max-I-Probe 进行灌洗。子组 A2:用 NaviTip Fx 进行冲洗。子组 A3:用 IrriFlex 弹性针进行冲洗。B 组(针头穿透 3 毫米),又分为三个亚组:B1 组:使用 Max-I-Probe 进行灌洗。B2 亚组:用 NaviTip Fx 进行冲洗。B3 亚组:用 IrriFlex 弹性针进行冲洗。XP-endo Shaper 用于化学机械制备。从小瓶中取出后,对牙齿进行培养,然后从培养箱中取出并再次称重三次。取平均值。采用方差分析(ANOVA)和最小显著性差异检验来分析数据:所有针头都会导致碎屑挤出。根据穿刺深度,各组之间存在明显差异(P ≤ 0.001)。B3 亚组的碎屑值最低,而 A2 亚组的平均值最高:结果显示,针的设计和深度对碎片挤出有很大影响。使用更灵活的针头和更短的穿刺深度进行冲洗,这样我们就不需要将针头推向根尖那么远。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Indian Journal of Dental Research
Indian Journal of Dental Research Dentistry-Dentistry (all)
CiteScore
1.80
自引率
0.00%
发文量
80
审稿时长
38 weeks
期刊介绍: Indian Journal of Dental Research (IJDR) is the official publication of the Indian Society for Dental Research (ISDR), India section of the International Association for Dental Research (IADR), published quarterly. IJDR publishes scientific papers on well designed and controlled original research involving orodental sciences. Papers may also include reports on unusual and interesting case presentations and invited review papers on significant topics.
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