Background: Little is known about how the chemical composition of enamel affects the optical properties of teeth, but advances in technology allow this to be studied using white-light and fluorescent images. This study aimed to identify the variation in enamel chemical composition that may affect tooth optical properties, such as tooth color and autofluorescence. Methods: Sixty-one specimens of extracted human molars were prepared. Raman spectrometry was used to assess chemical composition of enamel, and tooth color, and autofluorescence from enamel were evaluated by quantitative light-induced fluorescence (QLF) images. Pearson correlation and multiple linear regression analyses were used. Results: Enamel fluorescence was related to ena...
This study reports the development and evaluation of a novel method using quantitative light-induced...
AbstractObjectiveTo analyze concentration of phosphate ν1 molecule in dental enamel by means of Rama...
This study reports the development and evaluation of a novel method using quantitative light-induced...
Objectives: We aimed to confirm whether autofluorescence emitted from teeth can predict tooth bleach...
Various technologies used to objectively determine enamel thickness or dentin exposure have been sug...
BACKGROUND: The difference in autofluorescence between enamel and dentine layer has prompted recomme...
INTRODUCTION: The ability to accurately detect tooth cracks and quantify their depth would allow the...
BACKGROUND: Various techniques have been suggested to quantitatively assess tooth wear; most have li...
The aim of this work was to verify the existence of correlation between Raman spectroscopy readings ...
Objective: This review integrates published scientific information about the fluorescence of natural...
OBJECTIVES: To determine whether quantitative light-induced fluorescence (QLF) technology can be use...
Dental enamel is the most complex and highly mineralized human body tissue, containing more than 95%...
Objective: To match perfectly the optical properties of natural teeth, a scientific approach is need...
Objective: To match perfectly the optical properties of natural teeth, a scientific approach is need...
BACKGROUND: This study compared two fluorescence parameters (fluorescence loss [ΔF] and red fluoresc...
This study reports the development and evaluation of a novel method using quantitative light-induced...
AbstractObjectiveTo analyze concentration of phosphate ν1 molecule in dental enamel by means of Rama...
This study reports the development and evaluation of a novel method using quantitative light-induced...
Objectives: We aimed to confirm whether autofluorescence emitted from teeth can predict tooth bleach...
Various technologies used to objectively determine enamel thickness or dentin exposure have been sug...
BACKGROUND: The difference in autofluorescence between enamel and dentine layer has prompted recomme...
INTRODUCTION: The ability to accurately detect tooth cracks and quantify their depth would allow the...
BACKGROUND: Various techniques have been suggested to quantitatively assess tooth wear; most have li...
The aim of this work was to verify the existence of correlation between Raman spectroscopy readings ...
Objective: This review integrates published scientific information about the fluorescence of natural...
OBJECTIVES: To determine whether quantitative light-induced fluorescence (QLF) technology can be use...
Dental enamel is the most complex and highly mineralized human body tissue, containing more than 95%...
Objective: To match perfectly the optical properties of natural teeth, a scientific approach is need...
Objective: To match perfectly the optical properties of natural teeth, a scientific approach is need...
BACKGROUND: This study compared two fluorescence parameters (fluorescence loss [ΔF] and red fluoresc...
This study reports the development and evaluation of a novel method using quantitative light-induced...
AbstractObjectiveTo analyze concentration of phosphate ν1 molecule in dental enamel by means of Rama...
This study reports the development and evaluation of a novel method using quantitative light-induced...