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Connective Tissue Research
|
November 4, 2000
Atomic force microscopy studies of crystal surface topology during enamel development
J Kirkham, S J Brookes, R C Shore, et al.
Journal of Dental Research
|
April 21, 2005
Penetration of fluoride into natural plaque biofilms
P S Watson, H A Pontefract, D A Devine, et al.
Journal of Dental Research
|
September 1, 1996
The chemical composition of tooth enamel in recessive dystrophic epidermolysis bullosa: significance with respect to dental caries
J Kirkham, C Robinson, S M Strafford, et al.
Archives of Oral Biology
|
June 30, 2006
Plaque biofilms: the effect of chemical environment on natural human plaque biofilm architecture
C Robinson, S Strafford, G Rees, et al.
Caries Research
|
December 23, 2000
Effect of experimental fluorosis on the surface topography of developing enamel crystals
J Kirkham, S J Brookes, J Zhang, et al.
Letters in Applied Microbiology
|
February 14, 2004
Minimizing prion risk without compromising the microbial composition of biofilms grown in vivo in a human plaque model
P S Watson, C H Sissons, D A Devine, et al.
Connective Tissue Research
|
September 4, 2003
Subunit structures in hydroxyapatite crystal development in enamel: implications for amelogenesis imperfecta
C Robinson, R C Shore, S R Wood, et al.
Caries Research
|
January 1, 1997
A method for the quantitative site-specific study of the biochemistry within dental plaque biofilms formed in vivo
C Robinson, J Kirkham, R Percival, et al.
Journal of Dental Research
|
February 24, 2001
Evidence for charge domains on developing enamel crystal surfaces
J Kirkham, J Zhang, S J Brookes, et al.
Bone
|
December 20, 2005
Preservation of thoracic spine microarchitecture by alendronate: comparison of histology and microCT
L D Hordon, M Itoda, P A Shore, et al.
Page
of 8
Search research articles
Search
Showing results (71-80 of 80) with videos related to
Sort By:
Page
of 8
You have reached the last page of results.
This site can display upto 80 results.
Connective Tissue Research
|
November 4, 2000
Atomic force microscopy studies of crystal surface topology during enamel development
J Kirkham, S J Brookes, R C Shore, et al.
Journal of Dental Research
|
April 21, 2005
Penetration of fluoride into natural plaque biofilms
P S Watson, H A Pontefract, D A Devine, et al.
Journal of Dental Research
|
September 1, 1996
The chemical composition of tooth enamel in recessive dystrophic epidermolysis bullosa: significance with respect to dental caries
J Kirkham, C Robinson, S M Strafford, et al.
Archives of Oral Biology
|
June 30, 2006
Plaque biofilms: the effect of chemical environment on natural human plaque biofilm architecture
C Robinson, S Strafford, G Rees, et al.
Caries Research
|
December 23, 2000
Effect of experimental fluorosis on the surface topography of developing enamel crystals
J Kirkham, S J Brookes, J Zhang, et al.
Letters in Applied Microbiology
|
February 14, 2004
Minimizing prion risk without compromising the microbial composition of biofilms grown in vivo in a human plaque model
P S Watson, C H Sissons, D A Devine, et al.
Connective Tissue Research
|
September 4, 2003
Subunit structures in hydroxyapatite crystal development in enamel: implications for amelogenesis imperfecta
C Robinson, R C Shore, S R Wood, et al.
Caries Research
|
January 1, 1997
A method for the quantitative site-specific study of the biochemistry within dental plaque biofilms formed in vivo
C Robinson, J Kirkham, R Percival, et al.
Journal of Dental Research
|
February 24, 2001
Evidence for charge domains on developing enamel crystal surfaces
J Kirkham, J Zhang, S J Brookes, et al.
Bone
|
December 20, 2005
Preservation of thoracic spine microarchitecture by alendronate: comparison of histology and microCT
L D Hordon, M Itoda, P A Shore, et al.
Page
of 8