International audienceResearch on bone and teeth mineralization in animal models is critical for understanding human pathologies. Genetically modified mice represent highly valuable models for the study of osteo/dentinogenesis defects and osteoporosis. Current investigations on mice dental and skeletal phenotype use destructive and time consuming methods such as histology and scanning microscopy. Micro-CT imaging is quicker and provides high resolution qualitative phenotypic description. However reliable quantification of mineralization processes in mouse bone and teeth are still lacking. We have established novel CT imaging-based software for accurate qualitative and quantitative analysis of mouse mandibular bone and molars. Data were obta...
Introduction: Knowledge about macro- and micro-structural characteristics may improve in vivo estima...
Adverse effects of high dietary phosphorus on bone health have been observed in both animal and huma...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/142030/1/jper0273.pd
International audienceResearch on bone and teeth mineralization in animal models is critical for und...
3D visualization and quantification of bone and teeth mineralization for the study of osteo/dentinog...
Computed tomography (CT) has become an integral tool in modern biomedical research and for the diagn...
<p>A and B are representative μCT images of the mandibles from 3- and 6-month-old <i>Dspp</i><sup>+/...
11 pagesInternational audienceWe describe the application of high-resolution 3D microcomputed tomogr...
<p>Samples from 8-week-old male wild-type (WT) C57BL/6 mice were scanned with the μCT System (Skysca...
This chapter describes the use of micro-computed tomography scanning for analyzing bone structure, f...
Micro-computed tomography can be applied for the assessment of the micro-architectural characteristi...
Micro-CT provides critical data for musculoskeletal research, yielding three-dimensional datasets co...
A non-destructive, three-dimensional technique for microstructural phenotypic characterisation of sk...
International audienceBone microarchitecture and mineralization were determined at three-dimensional...
Holotomography, a phase sensitive synchrotron-based μCT modality, is a quantitative 3D imaging metho...
Introduction: Knowledge about macro- and micro-structural characteristics may improve in vivo estima...
Adverse effects of high dietary phosphorus on bone health have been observed in both animal and huma...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/142030/1/jper0273.pd
International audienceResearch on bone and teeth mineralization in animal models is critical for und...
3D visualization and quantification of bone and teeth mineralization for the study of osteo/dentinog...
Computed tomography (CT) has become an integral tool in modern biomedical research and for the diagn...
<p>A and B are representative μCT images of the mandibles from 3- and 6-month-old <i>Dspp</i><sup>+/...
11 pagesInternational audienceWe describe the application of high-resolution 3D microcomputed tomogr...
<p>Samples from 8-week-old male wild-type (WT) C57BL/6 mice were scanned with the μCT System (Skysca...
This chapter describes the use of micro-computed tomography scanning for analyzing bone structure, f...
Micro-computed tomography can be applied for the assessment of the micro-architectural characteristi...
Micro-CT provides critical data for musculoskeletal research, yielding three-dimensional datasets co...
A non-destructive, three-dimensional technique for microstructural phenotypic characterisation of sk...
International audienceBone microarchitecture and mineralization were determined at three-dimensional...
Holotomography, a phase sensitive synchrotron-based μCT modality, is a quantitative 3D imaging metho...
Introduction: Knowledge about macro- and micro-structural characteristics may improve in vivo estima...
Adverse effects of high dietary phosphorus on bone health have been observed in both animal and huma...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/142030/1/jper0273.pd