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Factors affecting the cutting ability of sonic files

机译:影响声波锉刀切割能力的因素

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SummaryThe aim of this study was to investigate the cutting ability of sonic files. A model system was developed and the following variables evaluated: file type, Heliosonic or Shaper; file length, 21 or 29 mm; power, air inlet ring opening of half or fully open; stroke length, 2 or 4 mm; stroke rate, one or two cycles per second; and load 50 or 100 g. A 26 full‐factorial analysis with two replications into the effect of the above variables on the cutting ability of the MM1500 sonic instrument was performed. A new size 25 file was used for each cut, together with water irrigation, and the substrate used was 1‐mm thick sections of bovine bone. The differences between the variables were significant (ANOVA, P<0.001). However, examination of the F‐values showed that the most significant variable to affect cutting was load, followed by power, file type, stroke length and stroke rate, with the least significant variable being file length. The most significant interaction was between rate and length of stroke. An increase in stroke rate from one to two cycles per second at a stroke length of 2 mm produced an increase in cutting for both the Heliosonic and Shaper files. However, at the longer stroke length of 4 mm, the same increase in rate resulted in a decrease in cutting for the Shaper files. Therefore, it is suggested that operators should press the file against the canal wall and move it slowly to maximize cu
机译:摘要本研究的目的是研究声波锉刀的切割能力。开发了一个模型系统,并评估了以下变量:文件类型、Heliosonic 或 Shaper;锉刀长度,21 或 29 毫米;电源,进气环开口半开或全开;行程长度,2 或 4 mm;行程速率,每秒一个或两个周期;并装载 50 或 100 克。对上述变量对MM1500声波仪器切割能力的影响进行了26次全因子分析。每个切口都使用新的 25 号锉刀,并进行水灌溉,使用的基质是 1 毫米厚的牛骨切片。变量间差异显著(方差分析,P<0.001)。然而,对 F 值的检查表明,影响切削的最重要变量是载荷,其次是功率、锉刀类型、行程长度和行程速率,最不重要的变量是锉刀长度。最显著的交互作用是卒中速率和持续时间之间的交互作用。在 2 mm 的冲程长度下,冲程速率从每秒 1 个周期增加到 2 个周期,从而增加了 Heliosonic 和 Shaper 锉刀的切割速度。然而,在较长的 4 mm 行程长度下,相同的速率增加导致整形锉刀的切割减少。因此,建议操作人员将锉刀压在运河壁上,并缓慢移动以最大化 cu

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