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树脂复合材料修复体修整和抛光过程中牙髓温度的升高:一项体外研究。

Rise in pulp temperature during finishing and polishing of resin composite restorations: an in vitro study.

作者信息

Briseño B, Ernst C P, Willershausen-Zönnchen B

机构信息

Department of Conservative Dentistry, Johannes Gutenberg University, Mainz, Germany.

出版信息

Quintessence Int. 1995 May;26(5):361-5.

PMID:7568761
Abstract

The aim of this study was to establish the effects of the working speed, the use of coolant, and the pressure applied on the temperature of the pulp when resin composite restorations are finished and polished. One hundred eighty teeth with resin composite restorations are finished and polished. One hundred eighty teeth with resin composite restorations were randomly distributed into groups to be finished and polished with violet, blue, or yellow flexible disks. Each group was randomly subdivided into six subgroups of 10 each. Four subgroups were finished and polished, without water cooling, under constant pressure at speeds of 10,000, 8,000, 6,000 or 4,000 rpm. The other two subgroups were finished and polished at 10,000 rpm, one without water cooling while work was carried out intermittently and the the other with water cooling while work was carried out constantly. Results implied that a maximal speed of 4,000 rpm should be applied when polishing is carried out continuously without water coolant. When water cooling is used, flexible disks can safely be used at a speed of 10,000 rpm and with continuous pressure.

摘要

本研究的目的是确定在树脂复合材料修复体完成和抛光时,工作速度、冷却液的使用以及施加的压力对牙髓温度的影响。对180颗有树脂复合材料修复体的牙齿进行完成和抛光处理。将180颗有树脂复合材料修复体的牙齿随机分成几组,分别用紫色、蓝色或黄色软质盘进行完成和抛光。每组再随机细分为6个亚组,每组10颗牙。4个亚组在无水冷却的情况下,以10000、8000、6000或4000转/分钟的速度在恒定压力下进行完成和抛光。另外两个亚组以10000转/分钟的速度进行完成和抛光,一个在无水冷却且工作间歇进行的情况下,另一个在有水冷却且工作持续进行的情况下。结果表明,在无水冷却液且连续进行抛光时,最大速度应设定为4000转/分钟。当使用水冷时,软质盘可以在10000转/分钟的速度和连续压力下安全使用。

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