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热塑树脂卡环的固位力和疲劳强度。

Retentive forces and fatigue resistance of thermoplastic resin clasps.

机构信息

Department of Prosthodontics, Propaedeutics and Dental Materials, Christian-Albrechts University at Kiel, Germany.

出版信息

Dent Mater. 2012 Mar;28(3):273-8. doi: 10.1016/j.dental.2011.10.016. Epub 2011 Nov 29.

DOI:10.1016/j.dental.2011.10.016
PMID:22130464
Abstract

OBJECTIVES

The objective of this study was to evaluate the retentive force of clasps made from three thermoplastic resins and cobalt-chromium (CoCr) alloy by the insertion/removal test simulating 10 years use.

METHODS

On standardized premolar metal crowns 112 clasps were fabricated, including 16 CoCr (1.0 mm thick) clasps and 32 clasps (1.0 or 1.5 mm thick) from each of the following thermoplastic resins: polyetheretherketon (PEEK), polyetherketonketon (PEKK) and polyoxymethylene (POM). Specimens were divided in subgroups with clasp undercuts of 0.25 mm and 0.5 mm, respectively. Each clasp assembly was subjected to an insertion/removal test on its abutment crown for 15,000 cycles. To analyze the retention over the course of insertion/removal test, retention was measured every 1500 cycles. Data were statistically analyzed using 3-way ANOVA (α=0.05).

RESULTS

Resin clasps with 1.5mm thickness showed higher retention (4.9-9.1 N) than clasps with 1.0mm thickness (1.2-3.1 N; P≤0.001). Resin clasps of both dimensions had significantly lower retentive force than CoCr clasps (11.3-16.3 N; P≤0.001). Clasps with 0.25 mm undercut showed significantly less retention than clasps with 0.50 mm (P≤0.001). All clasps exhibited an increase in retentive force during the first period of cycling followed by continuous decrease till the end of the cycling but it was still significantly not different compared to the initial retentive force (P=0.970).

SIGNIFICANCE

Thermoplastic resin clasps maintained retention over 15,000 joining and separating cycles with lower retention than CoCr clasps. However, the retention of adequately designed resin clasps might be sufficient for clinical use.

摘要

目的

本研究旨在通过模拟使用 10 年的插入/移除试验评估三种热塑性树脂和钴铬(CoCr)合金制成的卡环的固位力。

方法

在标准化的前磨牙金属冠上制作了 112 个卡环,包括 16 个 CoCr(1.0mm 厚)卡环和 32 个(1.0 或 1.5mm 厚)来自以下热塑性树脂的卡环:聚醚醚酮(PEEK)、聚醚酮酮(PEKK)和聚甲醛(POM)。将试件分为两组,分别具有 0.25mm 和 0.5mm 的卡环下切迹。每个卡环组件在其基牙冠上进行 15000 次插入/移除试验。为了分析插入/移除试验过程中的保留情况,每 1500 次循环测量保留力。使用 3 因素方差分析(α=0.05)对数据进行统计分析。

结果

1.5mm 厚的树脂卡环的保留力(4.9-9.1N)高于 1.0mm 厚的卡环(1.2-3.1N;P≤0.001)。两种尺寸的树脂卡环的固位力均明显低于 CoCr 卡环(11.3-16.3N;P≤0.001)。0.25mm 下切迹的卡环保留力明显低于 0.50mm 下切迹的卡环(P≤0.001)。所有卡环在循环的前一阶段表现出固位力增加,随后持续下降直至循环结束,但与初始固位力相比仍无显著差异(P=0.970)。

意义

热塑性树脂卡环在 15000 次连接和分离循环中保持了保留力,保留力低于 CoCr 卡环。然而,设计合理的树脂卡环的保留力可能足以满足临床应用。

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