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Journal of Colloid and Interface Science|November 10, 2000
The Early Stages of Native Enamel Dissolution Studied with Atomic Force MicroscopyFinke, Jandt, Parker
Journal of Colloid and Interface Science|November 18, 2005
Influence of soft drinks on the thickness and morphology of in situ acquired pellicle layer on enamelManuela Finke, David M Parker, Klaus D Jandt
Journal of Colloid and Interface Science|November 10, 2004
In vitro demineralization/remineralization cycles at human tooth enamel surfaces investigated by AFM and nanoindentationFrank Lippert, David M Parker, Klaus D Jandt
European Journal of Oral Sciences|February 12, 2004
Susceptibility of deciduous and permanent enamel to dietary acid-induced erosion studied with atomic force microscopy nanoindentationFrank Lippert, David M Parker, Klaus D Jandt
Journal of Colloid and Interface Science|August 21, 2003
Enamel dissolution as a function of solution degree of saturation with respect to hydroxyapatite: a nanoindentation studyMichele E Barbour, David M Parker, Klaus D Jandt
European Journal of Oral Sciences|June 6, 2003
Human enamel dissolution in citric acid as a function of pH in the range 2.30< or =pH< or =6.30--a nanoindentation studyMichele E Barbour, David M Parker, Geoff C Allen, et al.
European Journal of Oral Sciences|September 17, 2003
Enamel dissolution in citric acid as a function of calcium and phosphate concentrations and degree of saturation with respect to hydroxyapatiteMichele E Barbour, David M Parker, Geoff C Allen, et al.
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