Danielle Decrouez
Biographic Data
| ID | 4256414 |
|---|---|
| NAME | Danielle Decrouez |
| GIVEN NAMES | Danielle |
| FAMILY NAME | Decrouez |
| SIGNATURE | DECROUEZ D |
| AFFILIATIONS | Natural History Museum of Geneva |
| VERIFIED | No |
| TOTAL WORKS | 4 |
| TOTAL CITATIONS | 21 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 1992 |
| LATEST PUBLICATION YEAR | 2010 |
| H-INDEX | 3 |
Provenance of Marbles From Naxos Based on Microstructural and Geochemical Characterization
A detailed quantitative microstructural study coupled with cathodoluminescence and geochemical analyses on marbles from Naxos demonstrates that the analysis of microstructures is the most sensitive method to define the origin of marbles within, and between, different regions. Microstructure examination can only be used as an accurate provenance tool if a correction for the second‐phase content is considered. If second phases are not considered, a…
Étude de trois fragments de sculpture antique de Bavay (Nord)
La construction de la maison médicale de Bavay, dans les années 70, a été l'occasion de la découverte exceptionnelle de trois fragments de statuaire antique en marbre. D'une qualité remarquable, ces marbres font l'objet d'une étude stylistique et physique pour tenter d'en déterminer la nature, la provenance et la chronologie. Il s'agit de deux torses de satyres, copiés d'après le groupe hellénistique de l'« Invitation à la danse », et de la plint…
A Quantitative Fabric Analysis Approach to the Discrimination of White Marbles
Quantitative fabric analysis was applied in order to discriminate better among white marbles from various quarries of archaeological interest. This method provides an effective complementary tool to a characterization based upon petrography, cathodoluminescence microscopy and stable isotopes. Very good discrimination of marbles is achieved with the help of simple variables such as major axis and the shape‐specific PARlS‐factor. Using quantitative…
Cathodoluminescence of White Marbles: An Overview
Identifying the source area of white marbles has long been a problem in archaeology. To address this problem, about 1000 samples from known Classical quarrying areas in Greece, Italy and Turkey were analysed using cathodoluminescence. Twenty‐one cathodomicrofacies were recognized, each of which generally characterizes a given area. In cases where the cathodomicrofacies is common to more than one area, δ 13 C and δ 18 O signatures provide an effec…
Cathodoluminescence of White Marbles: An Overview
Identifying the source area of white marbles has long been a problem in archaeology. To address this problem, about 1000 samples from known Classical quarrying areas in Greece, Italy and Turkey were analysed using cathodoluminescence. Twenty‐one cathodomicrofacies were recognized, each of which generally characterizes a given area. In cases where the cathodomicrofacies is common to more than one area, δ 13 C and δ 18 O signatures provide an effec…
Provenance of Marbles From Naxos Based on Microstructural and Geochemical Characterization
A detailed quantitative microstructural study coupled with cathodoluminescence and geochemical analyses on marbles from Naxos demonstrates that the analysis of microstructures is the most sensitive method to define the origin of marbles within, and between, different regions. Microstructure examination can only be used as an accurate provenance tool if a correction for the second‐phase content is considered. If second phases are not considered, a…
A Quantitative Fabric Analysis Approach to the Discrimination of White Marbles
Quantitative fabric analysis was applied in order to discriminate better among white marbles from various quarries of archaeological interest. This method provides an effective complementary tool to a characterization based upon petrography, cathodoluminescence microscopy and stable isotopes. Very good discrimination of marbles is achieved with the help of simple variables such as major axis and the shape‐specific PARlS‐factor. Using quantitative…
Cathodoluminescence of White Marbles: An Overview
Identifying the source area of white marbles has long been a problem in archaeology. To address this problem, about 1000 samples from known Classical quarrying areas in Greece, Italy and Turkey were analysed using cathodoluminescence. Twenty‐one cathodomicrofacies were recognized, each of which generally characterizes a given area. In cases where the cathodomicrofacies is common to more than one area, δ 13 C and δ 18 O signatures provide an effec…
A Quantitative Fabric Analysis Approach to the Discrimination of White Marbles
Quantitative fabric analysis was applied in order to discriminate better among white marbles from various quarries of archaeological interest. This method provides an effective complementary tool to a characterization based upon petrography, cathodoluminescence microscopy and stable isotopes. Very good discrimination of marbles is achieved with the help of simple variables such as major axis and the shape‐specific PARlS‐factor. Using quantitative…
Étude de trois fragments de sculpture antique de Bavay (Nord)
La construction de la maison médicale de Bavay, dans les années 70, a été l'occasion de la découverte exceptionnelle de trois fragments de statuaire antique en marbre. D'une qualité remarquable, ces marbres font l'objet d'une étude stylistique et physique pour tenter d'en déterminer la nature, la provenance et la chronologie. Il s'agit de deux torses de satyres, copiés d'après le groupe hellénistique de l'« Invitation à la danse », et de la plint…
Provenance of Marbles From Naxos Based on Microstructural and Geochemical Characterization
A detailed quantitative microstructural study coupled with cathodoluminescence and geochemical analyses on marbles from Naxos demonstrates that the analysis of microstructures is the most sensitive method to define the origin of marbles within, and between, different regions. Microstructure examination can only be used as an accurate provenance tool if a correction for the second‐phase content is considered. If second phases are not considered, a…
Building materials and conservation (3 works) · Chemistry (3 works) · Cultural Heritage Materials Analysis (3 works) · Geology (3 works) · Geology (3 works) · Materials Science (3 works) · Mineralogy (3 works) · Archaeology (2 works) · Cathodoluminescence (2 works) · Characterization (materials science) (2 works)