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临床牙科中一种捕获荧光的新方法。

A Novel Method of Capturing Fluorescence in Clinical Dentistry.

作者信息

Brokos Yiannis, Stavridakis Minos, Krejci Ivo

机构信息

Division of Cariology and Endodontology, University Clinics of Dental Medicine (CUMD), University of Geneva, Geneva, Switzerland; Private Practice, Rhodes, Greece.

Division of Cariology and Endodontology, University Clinics of Dental Medicine (CUMD), University of Geneva, Geneva, Switzerland; Private Practice, Athens, Greece.

出版信息

Compend Contin Educ Dent. 2018 Jan;39(1):e1-e4.

Abstract

OBJECTIVES

A fully integrated esthetic restoration should emit levels of fluorescence similar to that of natural dentition. Also, dental practitioners should be able to monitor this property in their routine clinical setting. The aim of this study was to investigate the efficacy of a removable filter for a macro flash illumination set-up required for the digital photographic recording of the fluorescence emission of human teeth and dental restorations.

METHODS

The traditional fluorescence capturing method in clinical dentistry, using continuous lighting, was compared with the proposed flash lighting method. A digital single-lens reflex Canon 550D camera with a Canon 100-mm macro lens and a commercially available standard Canon MT-24EX twin light macro flash were used in this study. A custom-fabricated plastic o-ring was fixed with silicone to the original flash framework, which received a removable fluorescence filter composed of two 365-nm ultraviolet (UV) glass filters on both sides, covering the flash lamps. The original protective plastic diffusers in front of the flash lamps were replaced with clear plastic to release the full excitation wavelength range of the xenon flash lamps. No additional filter was placed in front of the lens.

RESULTS

The results showed that using the proposed custom-made flash/filter illumination source, f-numbers between 16 through 22, a shutter speed of 1/60, and ISO 800 or 1600 sensitivity settings attained satisfactory fluorescent digital images. Results were comparable to those accomplished using a traditional photographic technique, without the need for a dark room, extended exposure times, and time-consuming set-ups.

CONCLUSION

A contemporary photographic technique was demonstrated using macro flash UV-A 365-nm illumination that allowed fluorescent digital photograph acquisition under standard dental office conditions. Fluorescence documentation using a quick, straightforward procedure can take place during the restorative session to help increase the success rate of dental restorations.

摘要

目的

一个完全集成的美学修复体应发出与天然牙列相似的荧光水平。此外,牙科医生应能够在日常临床环境中监测这一特性。本研究的目的是调查一种可移动滤光片对于人体牙齿和牙科修复体荧光发射数字摄影记录所需的微距闪光照明设置的效果。

方法

将临床牙科中使用连续照明的传统荧光捕捉方法与所提出的闪光照明方法进行比较。本研究使用了一台配备佳能100毫米微距镜头的佳能550D数码单反相机和一个市售的标准佳能MT - 24EX双灯微距闪光灯。一个定制的塑料O形环用硅胶固定在原来的闪光灯框架上,该框架在两侧装有由两个365纳米紫外线(UV)玻璃滤光片组成的可移动荧光滤光片,覆盖闪光灯。闪光灯前原来的保护性塑料漫射器被透明塑料取代,以释放氙气闪光灯的完整激发波长范围。镜头前未放置额外的滤光片。

结果

结果表明,使用所提出的定制闪光灯/滤光片照明源、f值在16至22之间、快门速度为1/60以及ISO 800或1600感光度设置可获得令人满意的荧光数字图像。结果与使用传统摄影技术获得的结果相当,无需暗室、延长曝光时间和耗时的设置。

结论

展示了一种使用微距闪光UV - A 365纳米照明的现代摄影技术,该技术允许在标准牙科诊所条件下采集荧光数字照片。在修复过程中可以通过快速、直接的程序进行荧光记录,以帮助提高牙科修复的成功率。

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