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Nature Communications|November 22, 2018
Quantitative metaproteomics of medieval dental calculus reveals individual oral health statusRosa R Jersie-Christensen, Liam T Lanigan, David Lyon, et al.
Nature Protocols|April 26, 2024
Deep-time phylogenetic inference by paleoproteomic analysis of dental enamelAlberto J Taurozzi, Patrick L Rüther, Ioannis Patramanis, et al.
Scientific Reports|February 23, 2012
Application and comparison of large-scale solution-based DNA capture-enrichment methods on ancient DNAMaría C Avila-Arcos, Enrico Cappellini, J Alberto Romero-Navarro, et al.
Die Naturwissenschaften|December 25, 2009
A multidisciplinary study of archaeological grape seedsEnrico Cappellini, M Thomas P Gilbert, Filippo Geuna, et al.
Journal of Proteome Research|November 23, 2011
Proteomic analysis of a pleistocene mammoth femur reveals more than one hundred ancient bone proteinsEnrico Cappellini, Lars J Jensen, Damian Szklarczyk, et al.
Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|October 5, 2020
Multi-omic detection of Mycobacterium leprae in archaeological human dental calculusAnna K Fotakis, Sean D Denham, Meaghan Mackie, et al.
Science (New York, N.Y.)|April 10, 2025
A male Denisovan mandible from Pleistocene TaiwanTakumi Tsutaya, Rikai Sawafuji, Alberto J Taurozzi, et al.
Journal of Proteome Research|September 26, 2024
Automated High-Throughput Biological Sex Identification from Archeological Human Dental Enamel Using Targeted ProteomicsClaire Koenig, Patricia Bortel, Ryan S Paterson, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 26, 2026
The Japanese Archipelago sheltered cave lions, not tigers, during the Late PleistoceneXin Sun, Lanhui Peng, Takumi Tsutaya, et al.
Nature Communications|May 5, 2022
SPIN enables high throughput species identification of archaeological bone by proteomicsPatrick Leopold Rüther, Immanuel Mirnes Husic, Pernille Bangsgaard, et al.
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