Hildur Gestsdóttir
Biographic Data
| ID | 169805 |
|---|---|
| NAME | Hildur Gestsdóttir |
| GIVEN NAMES | Hildur |
| FAMILY NAME | Gestsdóttir |
| SIGNATURE | GESTSDÓTTIR H |
| AFFILIATIONS | University of Iceland |
| ORCID | 0000-0002-8382-5985 |
| VERIFIED | Yes |
| TOTAL WORKS | 12 |
| TOTAL CITATIONS | 97 |
| AUTHOR COUNT | 12 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2006 |
| LATEST PUBLICATION YEAR | 2023 |
| H-INDEX | 5 |
Mixed ancestry of Europeans who settled Iceland and Greenland
Debate surrounds the identity of the Europeans who settled Iceland and Greenland in the early medieval period. Historical sources record settlers travelling from Norway to Iceland and then Greenland, but recent analyses of biological data suggest that some settlers had British and Irish ancestry. Here, the authors test these hypotheses with 3D-shape analyses of human crania from Scandinavia, Britain and Ireland, and one of the Norse colonies in G…
Population genomics of the Viking world
Dating religious change
Mortuary customs frequently provide the principal archaeological evidence for religious identity. Such customs are often seen as a direct reflection of religion and therefore a change of religion should be expected to result in a change in burial rite. There is growing evidence that the relationship is not so straightforward. In this paper we report results from Viking Age Iceland which challenge the previous view of a relatively clear-cut transi…
Deciphering diet and monitoring movement
OBJECTIVES: A previous multi-isotope study of archaeological faunal samples from Skútustaðir, an early Viking age settlement on the southern shores of Lake Mývatn in north-east Iceland, demonstrated that there are clear differences in δ(34)S stable isotope values between animals deriving their dietary protein from terrestrial, freshwater, and marine reservoirs. The aim of this study was to use this information to more accurately determine the die…
Utilization of δ13C, δ15N, and δ34S Analyses to Understand 14C Dating Anomalies within a Late Viking Age Community in Northeast Iceland
Previous stable isotope studies of modern and archaeological faunal samples from sites around Lake Mývatn, within the Mývatnssveit region of northeast Iceland, revealed that an overlap existed between the δ 15 N ranges of terrestrial herbivores and freshwater fish, while freshwater biota displayed δ 13 C values that were comparable with marine resources. Therefore, within this specific ecosystem, the separation of terrestrial herbivores, freshwat…
Utilization of δ 13 C, δ 15 N, and δ 34 S Analyses to Understand 14 C Dating Anomalies within a Late Viking Age Community in Northeast Iceland
Previous stable isotope studies of modern and archaeological faunal samples from sites around Lake Mývatn, within the Mývatnssveit region of northeast Iceland, revealed that an overlap existed between the δ 15 N ranges of terrestrial herbivores and freshwater fish, while freshwater biota displayed δ 13 C values that were comparable with marine resources. Therefore, within this specific ecosystem, the separation of terrestrial herbivores, freshwat…
The Peopling of the North Atlantic
Iceland was colonized by settlers from the North Atlantic rim of Europe near the end of the first millennium AD. This ws a remarkable achievement and the subject of much discussion. Historical documents, the Sagas, suggest that the settlers came from western Norway and all arrived within a brief period after which no further settlement took place. Genetic data, both modern and ancient, suggests that the settlers came from several places in Scandi…
The Colonization of Iceland in Light of Isotope Analyses
A review of the mounting archaeological evidence for the colonization of Iceland suggests that the whole country was occupied within a couple of decades towards the end of the 9th century AD. Analyses of strontium in human bones show, however, that immigrants continued to arrive in Iceland throughout the 10th century. Here we discuss this apparent contradiction, suggesting that while continued immigration may have been needed to sustain the popul…
Historical Osteoarchaeology in Iceland
Radiocarbon reservoir effects in human bone collagen from northern Iceland
Reservoirs and Radiocarbon
This paper examines 2 potential sources of the radiocarbon offset between human and terrestrial mammal (horse) bones recovered from Norse (∼AD 870–1000) pagan graves in Mývatnssveit, north Iceland. These are the marine and freshwater 14 C reservoir effects that may be incorporated into human bones from dietary sources. The size of the marine 14 C reservoir effect (MRE) during the Norse period was investigated by measurement of multiple paired sam…
The first settlers of Iceland
The colonisation of the North Atlantic from the eighth century AD was the earliest expansion of European populations to the west. Norse and Celtic voyagers are recorded as reaching and settling in Iceland, Greenland and easternmost North America betweenc. AD 750 and 1000, but the date of these events and the homeland of the colonists are subjects of some debate. In this project, the birthplaces of 90 early burials from Iceland were sought using s…
Radiocarbon reservoir effects in human bone collagen from northern Iceland
Reservoirs and Radiocarbon
This paper examines 2 potential sources of the radiocarbon offset between human and terrestrial mammal (horse) bones recovered from Norse (∼AD 870–1000) pagan graves in Mývatnssveit, north Iceland. These are the marine and freshwater 14 C reservoir effects that may be incorporated into human bones from dietary sources. The size of the marine 14 C reservoir effect (MRE) during the Norse period was investigated by measurement of multiple paired sam…
The first settlers of Iceland
The colonisation of the North Atlantic from the eighth century AD was the earliest expansion of European populations to the west. Norse and Celtic voyagers are recorded as reaching and settling in Iceland, Greenland and easternmost North America betweenc. AD 750 and 1000, but the date of these events and the homeland of the colonists are subjects of some debate. In this project, the birthplaces of 90 early burials from Iceland were sought using s…
Utilization of δ 13 C, δ 15 N, and δ 34 S Analyses to Understand 14 C Dating Anomalies within a Late Viking Age Community in Northeast Iceland
Previous stable isotope studies of modern and archaeological faunal samples from sites around Lake Mývatn, within the Mývatnssveit region of northeast Iceland, revealed that an overlap existed between the δ 15 N ranges of terrestrial herbivores and freshwater fish, while freshwater biota displayed δ 13 C values that were comparable with marine resources. Therefore, within this specific ecosystem, the separation of terrestrial herbivores, freshwat…
Deciphering diet and monitoring movement
OBJECTIVES: A previous multi-isotope study of archaeological faunal samples from Skútustaðir, an early Viking age settlement on the southern shores of Lake Mývatn in north-east Iceland, demonstrated that there are clear differences in δ(34)S stable isotope values between animals deriving their dietary protein from terrestrial, freshwater, and marine reservoirs. The aim of this study was to use this information to more accurately determine the die…
The Colonization of Iceland in Light of Isotope Analyses
A review of the mounting archaeological evidence for the colonization of Iceland suggests that the whole country was occupied within a couple of decades towards the end of the 9th century AD. Analyses of strontium in human bones show, however, that immigrants continued to arrive in Iceland throughout the 10th century. Here we discuss this apparent contradiction, suggesting that while continued immigration may have been needed to sustain the popul…
Dating religious change
Mortuary customs frequently provide the principal archaeological evidence for religious identity. Such customs are often seen as a direct reflection of religion and therefore a change of religion should be expected to result in a change in burial rite. There is growing evidence that the relationship is not so straightforward. In this paper we report results from Viking Age Iceland which challenge the previous view of a relatively clear-cut transi…
The Peopling of the North Atlantic
Iceland was colonized by settlers from the North Atlantic rim of Europe near the end of the first millennium AD. This ws a remarkable achievement and the subject of much discussion. Historical documents, the Sagas, suggest that the settlers came from western Norway and all arrived within a brief period after which no further settlement took place. Genetic data, both modern and ancient, suggests that the settlers came from several places in Scandi…
Mixed ancestry of Europeans who settled Iceland and Greenland
Debate surrounds the identity of the Europeans who settled Iceland and Greenland in the early medieval period. Historical sources record settlers travelling from Norway to Iceland and then Greenland, but recent analyses of biological data suggest that some settlers had British and Irish ancestry. Here, the authors test these hypotheses with 3D-shape analyses of human crania from Scandinavia, Britain and Ireland, and one of the Norse colonies in G…
Historical Osteoarchaeology in Iceland
The first settlers of Iceland
The colonisation of the North Atlantic from the eighth century AD was the earliest expansion of European populations to the west. Norse and Celtic voyagers are recorded as reaching and settling in Iceland, Greenland and easternmost North America betweenc. AD 750 and 1000, but the date of these events and the homeland of the colonists are subjects of some debate. In this project, the birthplaces of 90 early burials from Iceland were sought using s…
Reservoirs and Radiocarbon
This paper examines 2 potential sources of the radiocarbon offset between human and terrestrial mammal (horse) bones recovered from Norse (∼AD 870–1000) pagan graves in Mývatnssveit, north Iceland. These are the marine and freshwater 14 C reservoir effects that may be incorporated into human bones from dietary sources. The size of the marine 14 C reservoir effect (MRE) during the Norse period was investigated by measurement of multiple paired sam…
Historical Osteoarchaeology in Iceland
Radiocarbon reservoir effects in human bone collagen from northern Iceland
Utilization of δ13C, δ15N, and δ34S Analyses to Understand 14C Dating Anomalies within a Late Viking Age Community in Northeast Iceland
Previous stable isotope studies of modern and archaeological faunal samples from sites around Lake Mývatn, within the Mývatnssveit region of northeast Iceland, revealed that an overlap existed between the δ 15 N ranges of terrestrial herbivores and freshwater fish, while freshwater biota displayed δ 13 C values that were comparable with marine resources. Therefore, within this specific ecosystem, the separation of terrestrial herbivores, freshwat…
Utilization of δ 13 C, δ 15 N, and δ 34 S Analyses to Understand 14 C Dating Anomalies within a Late Viking Age Community in Northeast Iceland
Previous stable isotope studies of modern and archaeological faunal samples from sites around Lake Mývatn, within the Mývatnssveit region of northeast Iceland, revealed that an overlap existed between the δ 15 N ranges of terrestrial herbivores and freshwater fish, while freshwater biota displayed δ 13 C values that were comparable with marine resources. Therefore, within this specific ecosystem, the separation of terrestrial herbivores, freshwat…
The Peopling of the North Atlantic
Iceland was colonized by settlers from the North Atlantic rim of Europe near the end of the first millennium AD. This ws a remarkable achievement and the subject of much discussion. Historical documents, the Sagas, suggest that the settlers came from western Norway and all arrived within a brief period after which no further settlement took place. Genetic data, both modern and ancient, suggests that the settlers came from several places in Scandi…
The Colonization of Iceland in Light of Isotope Analyses
A review of the mounting archaeological evidence for the colonization of Iceland suggests that the whole country was occupied within a couple of decades towards the end of the 9th century AD. Analyses of strontium in human bones show, however, that immigrants continued to arrive in Iceland throughout the 10th century. Here we discuss this apparent contradiction, suggesting that while continued immigration may have been needed to sustain the popul…
Deciphering diet and monitoring movement
OBJECTIVES: A previous multi-isotope study of archaeological faunal samples from Skútustaðir, an early Viking age settlement on the southern shores of Lake Mývatn in north-east Iceland, demonstrated that there are clear differences in δ(34)S stable isotope values between animals deriving their dietary protein from terrestrial, freshwater, and marine reservoirs. The aim of this study was to use this information to more accurately determine the die…
Dating religious change
Mortuary customs frequently provide the principal archaeological evidence for religious identity. Such customs are often seen as a direct reflection of religion and therefore a change of religion should be expected to result in a change in burial rite. There is growing evidence that the relationship is not so straightforward. In this paper we report results from Viking Age Iceland which challenge the previous view of a relatively clear-cut transi…
Population genomics of the Viking world
Mixed ancestry of Europeans who settled Iceland and Greenland
Debate surrounds the identity of the Europeans who settled Iceland and Greenland in the early medieval period. Historical sources record settlers travelling from Norway to Iceland and then Greenland, but recent analyses of biological data suggest that some settlers had British and Irish ancestry. Here, the authors test these hypotheses with 3D-shape analyses of human crania from Scandinavia, Britain and Ireland, and one of the Norse colonies in G…
Archaeology and ancient environmental studies (9 works) · Archaeology (8 works) · Isotope Analysis in Ecology (8 works) · Biology (7 works) · Geology (7 works) · Geography (6 works) · History (6 works) · Ecology (5 works) · Oceanography (5 works) · Paleontology (5 works)