Zandra Fagernäs
Datos Biográficos
| ID | 4435507 |
|---|---|
| NOMBRE | Zandra Fagernäs |
| NOMBRES | Zandra |
| APELLIDO | Fagernäs |
| FIRMA | FAGERNÄS Z |
| AFILIACIONES | University of Copenhagen |
| ORCID | 0000-0003-2667-3556 |
| VERIFICADO | Sí |
| TOTAL DE OBRAS | 8 |
| TOTAL DE CITAS | 5 |
| TOTAL COMO AUTOR | 8 |
| TOTAL COMO EDITOR | 0 |
| PRIMER AÑO DE PUBLICACIÓN | 2020 |
| AÑO MÁS RECIENTE DE PUBLICACIÓN | 2026 |
| ÍNDICE H | 2 |
The Oral Microbiome of King Richard III of England
Author response of
A recommendation of: Joannes A. A. Dekker, Carli Peters, Rachel M. Winter, Matthew J. Collins, Marc R. Dickinson, Virginia L. Harvey, Eden Hill, Bharath Nair, Takumi Tsutaya, Laura C. Viñas- Caron, Christina Warinner, Frido Welker, Zandra Fagernäs Open science, communication, and collaboration for the future of palaeoproteomics https://doi.org/10.5281/zenodo.15546095
Cleaning the dead
The study of ancient proteins preserved in a range of archaeological, cultural heritage, and palaeontological materials is increasingly contributing to our understanding of human evolution and archaeological research questions. Many of the specimens studied have been excavated and stored for a significant duration prior to their proteomic analysis. Human handling and storage environments therefore provide ample opportunities for protein contamina…
Early Holocene preservation differences between cortical and trabecular bone proteomes
Skeletal sample selection for evolutionary palaeoproteomic studies is currently based on the availability of material, without taking into account the influence of bone biology on the proteome composition of living bone. A prime example concerns the cortical and trabecular bone that is present simultaneously in many skeletal elements, including those recovered from archaeological sites. These two bone components are formed and maintained in diffe…
A comparative study of commercially available, minimally invasive, sampling methods on Early Neolithic humeri analysed via palaeoproteomics
Due to methodological advances in the archaeological sciences, an increasing number of archaeological specimens undergo destructive sampling. However, the preservation of cultural heritage is a primary concern. This leads to a dilemma between accessing sample material and obtaining sufficient information for a meaningful analytical outcome. Ideally, sampling a specimen would preserve the object for further macro, micro, and molecular analyses. Fo…
A Comparative Study of Commercially Available, Minimally Invasive, Sampling Methods on Early Neolithic Humeri Analysed Via Palaeoproteomics
Do I have something in my teeth? The trouble with genetic analyses of diet from archaeological dental calculus
Dental calculus and other preserved microbiome substrates are an attractive target for dietary reconstruction in past populations through a variety of physical, chemical, and molecular means. Recently, studies have attempted to reconstruct diet from archaeological dental calculus using archaeogenetic techniques. While dental calculus may provide a relatively stable environment for DNA preservation, the detection of plants and animals possibly con…
A unified protocol for simultaneous extraction of DNA and proteins from archaeological dental calculus
Archaeological materials are a finite resource, and efforts should be made to minimize destructive analyses. This can be achieved by using protocols combining extraction of several types of biomolecules or microparticles, which decreases the material needed for analyses while maximizing the information yield. Archaeological dental calculus is a source of several different types of biomolecules, as well as microfossils, and can tell us about the h…
A unified protocol for simultaneous extraction of DNA and proteins from archaeological dental calculus
Archaeological materials are a finite resource, and efforts should be made to minimize destructive analyses. This can be achieved by using protocols combining extraction of several types of biomolecules or microparticles, which decreases the material needed for analyses while maximizing the information yield. Archaeological dental calculus is a source of several different types of biomolecules, as well as microfossils, and can tell us about the h…
A comparative study of commercially available, minimally invasive, sampling methods on Early Neolithic humeri analysed via palaeoproteomics
Due to methodological advances in the archaeological sciences, an increasing number of archaeological specimens undergo destructive sampling. However, the preservation of cultural heritage is a primary concern. This leads to a dilemma between accessing sample material and obtaining sufficient information for a meaningful analytical outcome. Ideally, sampling a specimen would preserve the object for further macro, micro, and molecular analyses. Fo…
A unified protocol for simultaneous extraction of DNA and proteins from archaeological dental calculus
Archaeological materials are a finite resource, and efforts should be made to minimize destructive analyses. This can be achieved by using protocols combining extraction of several types of biomolecules or microparticles, which decreases the material needed for analyses while maximizing the information yield. Archaeological dental calculus is a source of several different types of biomolecules, as well as microfossils, and can tell us about the h…
Do I have something in my teeth? The trouble with genetic analyses of diet from archaeological dental calculus
Dental calculus and other preserved microbiome substrates are an attractive target for dietary reconstruction in past populations through a variety of physical, chemical, and molecular means. Recently, studies have attempted to reconstruct diet from archaeological dental calculus using archaeogenetic techniques. While dental calculus may provide a relatively stable environment for DNA preservation, the detection of plants and animals possibly con…
Early Holocene preservation differences between cortical and trabecular bone proteomes
Skeletal sample selection for evolutionary palaeoproteomic studies is currently based on the availability of material, without taking into account the influence of bone biology on the proteome composition of living bone. A prime example concerns the cortical and trabecular bone that is present simultaneously in many skeletal elements, including those recovered from archaeological sites. These two bone components are formed and maintained in diffe…
A comparative study of commercially available, minimally invasive, sampling methods on Early Neolithic humeri analysed via palaeoproteomics
Due to methodological advances in the archaeological sciences, an increasing number of archaeological specimens undergo destructive sampling. However, the preservation of cultural heritage is a primary concern. This leads to a dilemma between accessing sample material and obtaining sufficient information for a meaningful analytical outcome. Ideally, sampling a specimen would preserve the object for further macro, micro, and molecular analyses. Fo…
A Comparative Study of Commercially Available, Minimally Invasive, Sampling Methods on Early Neolithic Humeri Analysed Via Palaeoproteomics
Author response of
A recommendation of: Joannes A. A. Dekker, Carli Peters, Rachel M. Winter, Matthew J. Collins, Marc R. Dickinson, Virginia L. Harvey, Eden Hill, Bharath Nair, Takumi Tsutaya, Laura C. Viñas- Caron, Christina Warinner, Frido Welker, Zandra Fagernäs Open science, communication, and collaboration for the future of palaeoproteomics https://doi.org/10.5281/zenodo.15546095
Cleaning the dead
The study of ancient proteins preserved in a range of archaeological, cultural heritage, and palaeontological materials is increasingly contributing to our understanding of human evolution and archaeological research questions. Many of the specimens studied have been excavated and stored for a significant duration prior to their proteomic analysis. Human handling and storage environments therefore provide ample opportunities for protein contamina…
The Oral Microbiome of King Richard III of England
Computer Science (5 obras) · Geography (5 obras) · Archaeology (4 obras) · Forensic Anthropology and Bioarchaeology Studies (4 obras) · Pleistocene-Era Hominins and Archaeology (4 obras) · Ancient DNA (3 obras) · Archaeology and ancient environmental studies (3 obras) · Biology (3 obras) · Forensic and Genetic Research (3 obras) · Medicine (3 obras)