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根管牙胶的热塑性:一项体外热成像研究。

Thermoplastic properties of endodontic gutta-percha: a thermographic in vitro study.

作者信息

Briseño Marroquín Benjamín, Wolf Thomas Gerhard, Schürger Dennis, Willershausen Brita

机构信息

Department of Operative Dentistry, Johannes Gutenberg University Medical Center, Mainz, Germany.

Department of Operative Dentistry, Johannes Gutenberg University Medical Center, Mainz, Germany.

出版信息

J Endod. 2015 Jan;41(1):79-82. doi: 10.1016/j.joen.2014.07.004. Epub 2014 Aug 16.

Abstract

INTRODUCTION

Endodontic gutta-percha undergoes deformation at temperatures above 65°C. The temperature influence of heat carriers on gutta-percha cones was investigated in vitro.

METHODS

Six single-rooted extracted teeth were embedded in resin and fixed. The root canals were prepared (ProFile; Dentsply Maillefer, Ballaiques, Switzerland) to different tapers and bisected. Thermographic images when heating the gutta-percha cones (Roeko, Langenau, Germany) with a heat carrier (ML .12; SybronEndo, Orange, CA) at 1 and 5 mm from the working length were made with an infrared thermal imaging camera (ThermaCam P640; Flir Systems, Täby, Sweden). The device temperature was preset at 200°C. The pixel temperature registered at the contact lines between the heat carriers and gutta-percha cones in the thermographic images was recorded and statistically described.

RESULTS

A mean temperature (°C) instability in the heat carrier (324.96 ± 46.10, minimum = 147.35, maximum = 474.13), a temperature drop of the gutta-percha cones (159.52, ± 37.57, min 67.64, max 259.04) at the measuring level, and a mean temperature penetration depth (mm) equal or to higher than 65°C (1.05 ± 0.28, minimum = 0.20, maximum = 1.30) were recorded. No correlation between the penetration depth into the gutta-percha cones and applied temperatures, regardless of the size and/or taper, could be established.

CONCLUSIONS

Temperature discrepancies between the device preset and achieved ones of the heat carriers was observed. Gutta-percha is a poor thermal conductor, transports heat irregularly, and should be heated 1-2 mm from the target area.

摘要

引言

根管牙胶在65°C以上的温度下会发生变形。体外研究了热载体对牙胶尖的温度影响。

方法

将六颗单根离体牙嵌入树脂中固定。使用ProFile(登士柏迈尔菲尔,瑞士巴拉伊克)将根管预备成不同锥度并对半切开。使用红外热成像相机(ThermaCam P640;菲力尔系统公司,瑞典 Täby)拍摄用热载体(ML.12;赛柏龙牙髓公司,美国加利福尼亚州奥兰治)在距工作长度1毫米和5毫米处加热牙胶尖(德国朗根瑙的Roeko)时的热成像图。将设备温度预设为200°C。记录热成像图中热载体与牙胶尖接触线处记录的像素温度,并进行统计学描述。

结果

记录到热载体的平均温度(°C)不稳定(324.96 ± 46.10,最低 = 147.35,最高 = 474.13),在测量水平处牙胶尖的温度下降(159.52 ± 37.57,最低67.64,最高259.04),以及平均温度穿透深度(毫米)等于或高于65°C(1.05 ± 0.28,最低 = 0.20,最高 = 1.30)。无论尺寸和/或锥度如何,均未发现牙胶尖内的穿透深度与施加温度之间存在相关性。

结论

观察到热载体的预设温度与实际温度之间存在差异。牙胶是一种不良热导体,热量传递不规则,应在距目标区域1 - 2毫米处加热。

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