Oona Y-C Lee
Datos Biográficos
| ID | 6450158 |
|---|---|
| NOMBRE | Oona Y-C Lee |
| NOMBRES | Oona Y-C |
| APELLIDO | Lee |
| FIRMA | LEE O Y |
| AFILIACIONES | University of Birmingham |
| ORCID | 0000-0002-7077-7662 |
| VERIFICADO | Sí |
| TOTAL DE OBRAS | 5 |
| TOTAL DE CITAS | 16 |
| TOTAL COMO AUTOR | 5 |
| TOTAL COMO EDITOR | 0 |
| PRIMER AÑO DE PUBLICACIÓN | 2008 |
| AÑO MÁS RECIENTE DE PUBLICACIÓN | 2020 |
| ÍNDICE H | 3 |
Recognising the broad array of approaches available for the diagnosis of ancient tuberculosis
The characterisation of ancient tuberculosis is not totally dependent on the recovery of intact genomes. Judicious combinations of ancient DNA fragments and specific lipid biomarkers provide unambiguous diagnosis and these protocols are capable of refinement and extension. Currently, there is no direct evidence for exclusive co-evolution of humans and tuberculosis. A developing body of data suggests that the initial evolution of tuberculosis may …
Essentials in the use of mycolic acid biomarkers for tuberculosis detection
Biomolecular archaeology of ancient tuberculosis
Mycobacterium leprae genotype amplified from an archaeological case of lepromatous leprosy in Central Asia
Detection and Molecular Characterization of 9000-Year-Old Mycobacterium tuberculosis from a Neolithic Settlement in the Eastern Mediterranean
BACKGROUND: Mycobacterium tuberculosis is the principal etiologic agent of human tuberculosis. It has no environmental reservoir and is believed to have co-evolved with its host over millennia. This is supported by skeletal evidence of the disease in early humans, and inferred from M. tuberculosis genomic analysis. Direct examination of ancient human remains for M. tuberculosis biomarkers should aid our understanding of the nature of prehistoric …
Detection and Molecular Characterization of 9000-Year-Old Mycobacterium tuberculosis from a Neolithic Settlement in the Eastern Mediterranean
BACKGROUND: Mycobacterium tuberculosis is the principal etiologic agent of human tuberculosis. It has no environmental reservoir and is believed to have co-evolved with its host over millennia. This is supported by skeletal evidence of the disease in early humans, and inferred from M. tuberculosis genomic analysis. Direct examination of ancient human remains for M. tuberculosis biomarkers should aid our understanding of the nature of prehistoric …
Biomolecular archaeology of ancient tuberculosis
Mycobacterium leprae genotype amplified from an archaeological case of lepromatous leprosy in Central Asia
Essentials in the use of mycolic acid biomarkers for tuberculosis detection
Recognising the broad array of approaches available for the diagnosis of ancient tuberculosis
The characterisation of ancient tuberculosis is not totally dependent on the recovery of intact genomes. Judicious combinations of ancient DNA fragments and specific lipid biomarkers provide unambiguous diagnosis and these protocols are capable of refinement and extension. Currently, there is no direct evidence for exclusive co-evolution of humans and tuberculosis. A developing body of data suggests that the initial evolution of tuberculosis may …
Biology (4 obras) · Medicine (4 obras) · Pathology (4 obras) · Tuberculosis (4 obras) · Tuberculosis Research and Epidemiology (4 obras) · Archaeology (3 obras) · Infectious Diseases and Tuberculosis (3 obras) · Ancient DNA (2 obras) · Evolutionary biology (2 obras) · History (2 obras)