首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Comparison of nickel-titanium and stainless-steel spreader penetration and accessory cone fit in curved canals.
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Comparison of nickel-titanium and stainless-steel spreader penetration and accessory cone fit in curved canals.

机译:镍钛和不锈钢吊具渗透和附件锥体贴合的比较。

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摘要

The purpose of this study was to compare nickel-titanium and stainless-steel spreader penetration in curved canals. Twenty prepared plastic blocks with a 30 degrees curvature were used for each part of the study. In part 1, the force required to insert each spreader to within 1 mm of working length in an empty canal was measured. In part 2, the force required to insert each spreader to within 3 mm of working length was measured in a canal containing a master cone. In part 3, the depth of penetration of each spreader with a master cone in place using a 1.5 kg force was measured. Additionally, in part 3, the depth of penetration of the first accessory cone was measured. The results from part 1 showed that a nickel-titanium spreader required significantly less force than a stainless-steel spreader (0.30 kg vs. 0.59 kg). In part 2, a nickel-titanium spreader required significantly less force than a stainless-steel spreader (1.56 kg vs. 2.42 kg). In part 3, a nickel-titanium spreader penetrated significantly deeper than a stainless-steel spreader (15.0 mm vs. 14.0 mm). There was no significant difference in the depth of penetration of the first accessory cone used after either spreader (0.8 mm vs. 0.7 mm). Therefore, the potential for vertical root fracture in curved canals during lateral condensation may be minimized by using nickel-titanium spreaders.
机译:本研究的目的是将镍 - 钛和不锈钢吊具渗透进行比较。用于30度曲率的二十种制备的塑料块用于该研究的每个部分。在第1部分中,测量将每个吊具插入到空运河中的工作长度内的每个吊具所需的力。在第2部分中,在含有主锥体的运河中测量将每个吊具插入到工作长度范围内的力。在第3部分中,测量使用1.5 kg力的每个涂布器用主锥体的渗透深度。另外,在第3部分中,测量了第一附件锥体的渗透深度。第1部分的结果表明,镍钛涂布器的力明显小于不锈钢涂布器(0.30kg vs.0.59kg)。在第2部分中,镍钛涂布器需要比不锈钢涂布器(1.56千克与2.42千克)的力显着降低。在第3部分中,镍钛涂布器比不锈钢吊具(15.0mm与14.0mm)更深入穿透。在散布器(0.8mm与0.7mm)之后使用的第一个配件锥体的渗透深度没有显着差异。因此,通过使用镍钛涂布器,可以最小化横向缩合期间弯曲的运河中垂直根部断裂的电位。

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