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使用离体模型研究发光二极管光固化灯引起的牙髓温度升高

Pulp Temperature Rise Induced by Light-Emitting Diode Light-Curing Units Using an Ex Vivo Model.

作者信息

Vinagre Alexandra, Ramos João C, Rebelo Clara, Basto José Francisco, Messias Ana, Alberto Nélia, Nogueira Rogério

机构信息

Dentistry Area, Faculty of Medicine, University of Coimbra, Avenida Bissaya Barreto, Blocos de Celas, 3000-075 Coimbra, Portugal.

IPMD, Instituto Português de Medicina Dentária, Rua José Luciano Castro, nº 141, Esgueira, 3800-207 Aveiro, Portugal.

出版信息

Materials (Basel). 2019 Jan 29;12(3):411. doi: 10.3390/ma12030411.

Abstract

The aim of this research was to compare the pulp temperature (PT) rise induced by four light-emitting diode light-curing units (LED LCUs) (Bluephase 20i, Demi Ultra, SPEC 3, and Valo) in different curing modes. Immediately after extraction, the pulp chamber of 11 premolars was accessed from the palatal cervical third of the crown for insertion of fiber Bragg grating (FBG) sensors for temperature measurement and kept in a 37.0° water bath. The teeth were then submitted to a random sequence of curing modes with four irradiations at 30 s intervals. Care was taken to ensure complete pulp temperature reset between curing modes. The curing modes were classified as high-energy (above 80 J/cm²) or low-energy (below 40 J/cm²) according to the total energy density delivered. Statistical analysis was performed with repeated ANOVA measures and Pearson's correlation for the association between energy density and temperature variation. The significance level was set to 0.05. All curing units promoted a statistically significant PT rise (p < 0.01). After four emissions, the PT rise was higher than 5.0 °C for the high-energy curing modes. The low-energy modes induced approximately a 2.5 °C rise. A strong positive correlation was found between energy density and PT increase (R = 0.715; p = 0.01). Exposure of intact premolars to LED LCUs induced significant and cumulative PT rise. Curing modes emitting high energy densities produced higher PT variations. Radiant exposure was positively correlated to PT variation.

摘要

本研究的目的是比较四种发光二极管光固化机(LED LCU)(Bluephase 20i、Demi Ultra、SPEC 3和Valo)在不同固化模式下引起的牙髓温度(PT)升高。在牙齿拔除后,立即从牙冠腭侧颈三分之一处进入11颗前磨牙的髓腔,插入用于温度测量的光纤布拉格光栅(FBG)传感器,并将其置于37.0°的水浴中。然后,让牙齿按照随机顺序接受固化模式,每次照射间隔30秒,共照射四次。在不同固化模式之间,注意确保牙髓温度完全重置。根据传递的总能量密度,将固化模式分为高能量(高于80 J/cm²)或低能量(低于40 J/cm²)。采用重复方差分析和Pearson相关性分析能量密度与温度变化之间的关联。显著性水平设定为0.05。所有固化机均使PT升高具有统计学意义(p < 0.01)。四次照射后,高能量固化模式下的PT升高高于5.0°C。低能量模式引起的PT升高约为2.5°C。发现能量密度与PT升高之间存在强正相关(R = 0.715;p = 0.01)。完整前磨牙暴露于LED LCU会导致显著且累积的PT升高。发射高能量密度的固化模式会产生更大的PT变化。辐射暴露与PT变化呈正相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44e3/6384635/b73b89a3a5ca/materials-12-00411-g001.jpg

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