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首页> 外文期刊>European journal of oral sciences >A confocal micro-endoscopic investigation of the relationship between the microhardness of carious dentine and its autofluorescence.
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A confocal micro-endoscopic investigation of the relationship between the microhardness of carious dentine and its autofluorescence.

机译:龋牙本质显微硬度与其自身荧光之间关系的共聚焦显微内窥镜研究。

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摘要

This study aimed to investigate the null hypothesis that there is no relationship between the microhardness of carious dentine and its native autofluorescence (AF). Six extracted, carious molars were sectioned through natural lesions in the mesio-distal longitudinal plane. The Knoop microhardness (Knoop hardness number, KHN) of the cut surfaces of each sample was recorded at regular intervals through sound and carious dentine. Confocal fibre-optic micro-endoscopic (CFOME) examination of the carious dentine and the sound dentine was carried out at the same intervals using the Cellvizio system (600 microm wide, flat-end probe) with an excitation wavelength of 488 nm. The blindly collected numerical data were analysed using the original microhardness KHN. The data analysis indicated that the autofluorescence signals increased significantly when the microhardness of dentine dropped below 25 KHN. Therefore, the null hypothesis was disproved, and it was concluded from this investigation that the autofluorescent signal intensity recorded using CFOME could produce an objective and reproducible correlation to the microhardness of carious dentine. Confocal fibre-optic micro-endoscopic examination could have clinical potential as a technology to help delineate the carious dentine that might be excavated in a clinical procedure in vivo.
机译:这项研究旨在调查零假设,即龋牙本质的显微硬度与其天然自发荧光(AF)之间没有关系。在近中纵纵平面上通过自然病变切出六个提取的龋齿。通过有声且龋齿的牙本质以规则的间隔记录每个样品的切割表面的努氏显微硬度(努氏硬度值,KHN)。使用Cellvizio系统(600微米宽,平端探头),在488 nm的激发波长下,以相同的时间间隔对龋齿牙本质和声音牙本质进行共聚焦光纤微内窥镜(CFOME)检查。使用原始显微硬度KHN对盲目收集的数值数据进行了分析。数据分析表明,当牙本质的显微硬度低于25 KHN时,自发荧光信号显着增加。因此,原假设被反驳,从这项研究得出的结论是,使用CFOME记录的自发荧光信号强度可以与龋齿的牙本质的显微硬度产生客观且可重复的相关性。共焦光纤显微内窥镜检查作为一种有助于勾勒出可能在体内临床过程中挖掘出的龋齿牙本质的技术,具有临床潜力。

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