Carter T Atkinson, PhD
Specialty: Wildlife disease with a focus on vector borne parasitic diseases of birds
Research Interests: Ecology and pathogenicity of blood parasites of vertebrates
Personal Interests: Hiking and family life
Education and Certifications
Ph.D. 1985 Veterinary Parasitology, University of Florida, Gainesville, FL
M.S. 1981 Medical Parasitology, Louisiana State University Medical Center, New Orleans, LA
B.S. 1976 Biology, Dickinson College, Carlisle, PA
Science and Products
Filter Total Items: 96
Modeling future conservation of Hawaiian Honeycreepers by mosquito management and translocation of disease-tolerant Amakihi Modeling future conservation of Hawaiian Honeycreepers by mosquito management and translocation of disease-tolerant Amakihi
Avian malaria is an important cause of the decline of endemic Hawaiian honeycreepers. Because of the complexity of this disease system we used a computer model of avian malaria in forest birds to evaluate how two proposed conservation strategies: 1) reduction of habitat for mosquito larvae and 2) establishment of a low-elevation, malaria-tolerant honeycreeper (Hawaii Amakihi) to mid...
Authors
Peter H. F. Hobbelen, Michael D. Samuel, Dennis A. LaPointe, Carter T. Atkinson
Analysis of the trap gene provides evidence for the role of elevation and vector abundance in the genetic diversity of Plasmodium relictum in Hawaii Analysis of the trap gene provides evidence for the role of elevation and vector abundance in the genetic diversity of Plasmodium relictum in Hawaii
Background: The avian disease system in Hawaii offers an ideal opportunity to investigate host-pathogen interactions in a natural setting. Previous studies have recognized only a single mitochondrial lineage of avian malaria (Plasmodium relictum) in the Hawaiian Islands, but cloning and sequencing of nuclear genes suggest a higher degree of genetic diversity. Methods: In order to...
Authors
Margaret E.M. Farias, Carter T. Atkinson, Dennis A. LaPointe, Susan I. Jarvi
Ecology and conservation biology of avian malaria Ecology and conservation biology of avian malaria
Avian malaria is a worldwide mosquito-borne disease caused by Plasmodium parasites. These parasites occur in many avian species but primarily affect passerine birds that have not evolved with the parasite. Host pathogenicity, fitness, and population impacts are poorly understood. In contrast to continental species, introduced avian malaria poses a substantial threat to naive birds on...
Authors
Dennis A. LaPointe, Carter T. Atkinson, Michael D. Samuel
Keeping Hawai’i’s forest birds one step ahead of avian diseases in a warming world: a focus on Hakalau Forest National Wildlife Refuge. A case study from the National Conservation and Training Center Structured Decision Making Workshop Keeping Hawai’i’s forest birds one step ahead of avian diseases in a warming world: a focus on Hakalau Forest National Wildlife Refuge. A case study from the National Conservation and Training Center Structured Decision Making Workshop
This report is a product of a one-week workshop on using Structured Decision Making to identify and prioritize conservation actions to address the threat of climate change on Hawaii‟s native forest bird community. Specifically, t his report addresses the issue of global warming ‟s likely role in increasing disease prevalence in upper elevation forests of Hawaii, negatively impacting...
Authors
Eben H. Paxton, Jeff Burgett, Eve McDonald-Fadden, Ellen Bean, Carter T. Atkinson, Donna L. Ball, Colleen Cole, Lisa H. Crampton, Jim Kraus, Dennis A. LaPointe, Loyal Mehrhoff, Michael D. Samuel, Donna Brewer, Sarah J. Converse, Steve Morey
The dynamics, transmission, and population impacts of avian malaria in native hawaiian birds: A modeling approach The dynamics, transmission, and population impacts of avian malaria in native hawaiian birds: A modeling approach
We developed an epidemiological model of avian malaria (Plasmodium relictum) across an altitudinal gradient on the island of Hawaii that includes the dynamics of the host, vector, and parasite. This introduced mosquito‐borne disease is hypothesized to have contributed to extinctions and major shifts in the altitudinal distribution of highly susceptible native forest birds. Our goal was...
Authors
Michael D. Samuel, P.H.F. Hobbelen, F. Decastro, Jorge A. Ahumada, Dennis A. LaPointe, Carter T. Atkinson, Bethany L. Woodworth, P.J. Hart, D.C. Duffy
Trip report: pilot study of factors linking watershed function and coastal ecosystem health in American Samoa Trip report: pilot study of factors linking watershed function and coastal ecosystem health in American Samoa
Coral reef resources in the territory of American Samoa face significant problems from overfishing, non-point source pollution, global warming, and continuing population growth and development. The islands are still relatively isolated relative to other parts of the Pacific and have managed to avoid some of the more devastating invasive species that have reached other archipelagoes. As a...
Authors
Carter T. Atkinson, Arthur C. Medeiros
Thermal constraints to the sporogonic development and altitudinal distribution of avian malaria Plasmodium relictum in Hawai'i Thermal constraints to the sporogonic development and altitudinal distribution of avian malaria Plasmodium relictum in Hawai'i
More than half of the Hawaiian honeycreepers (Drepanidinae) known from historical records are now extinct. Introduced mosquito-borne disease, in particular the avian malaria Plasmodium relictum, has been incriminated as a leading cause of extinction during the 20th century and a major limiting factor in the recovery of remaining species populations. Today, most native Hawaiian bird...
Authors
Dennis A. LaPointe, M.L. Goff, Carter T. Atkinson
Efficacy of commercial canarypox vaccine for protecting Hawai'i 'Amakihi from field isolates of Avipoxvirus Efficacy of commercial canarypox vaccine for protecting Hawai'i 'Amakihi from field isolates of Avipoxvirus
At least three variants of avian pox virus are present in Hawai‘i - Fowlpox from domestic poultry and a group of genetically distinct viruses that cluster within two clades (Pox Variant 1 and Pox Variant 2) that are most similar to Canarypox based on DNA sequence of the virus 4b core protein gene. We tested whether Hawai‘i ‘Amakihi can be protected from wild virus isolates with an...
Authors
Carter T. Atkinson, Kimberly C. Wiegand, Dennis Triglia, Susan I. Jarvi
Efficacy of a commercial canarypox vaccine for protecting Hawai'i 'Amakihi from field isolates of avipoxvirus Efficacy of a commercial canarypox vaccine for protecting Hawai'i 'Amakihi from field isolates of avipoxvirus
At least three variants of avian pox virus are present in Hawai’i - Fowlpox from domestic poultry and a group of genetically distinct viruses that cluster within two clades (Pox Variant 1 and Pox Variant 2) that are most similar to Canarypox based on DNA sequence of the virus 4b core protein gene. We tested whether Hawai’i ‘Amakihi can be protected from wild virus isolates with an...
Authors
Carter T. Atkinson, Kimberly C. Wiegand, Dennis Triglia, Susan I. Jarvi
Changes in prevalence of avian malaria on the Alakai`i Plateau, Kaua`i. Hawai`i Changes in prevalence of avian malaria on the Alakai`i Plateau, Kaua`i. Hawai`i
We determined prevalence of malarial infections in samples of native and non-native forest birds that were sampled at three locations on the Alaka`i Plateau between 1994-1997 and again between 2007-2009. The three sites spanned the elevational range of the plateau and were located at Kawaikōī Stream (1100 m), the upper drainage of Mōhihi Stream (1250 m) and the vicinity of Halepa`akai...
Authors
Carter T. Atkinson, Ruth B. Utzurrum
Taqman Real-Time PCR Detects Avipoxvirus DNA in Blood of Hawaìi `Amakihi (Hemignathus virens) Taqman Real-Time PCR Detects Avipoxvirus DNA in Blood of Hawaìi `Amakihi (Hemignathus virens)
Authors
Margaret E.M. Farias, Dennis LaPointe, C. T. Atkinson, Christopher Czerwonka, Rajesh Shrestha, Susan I. Jarvi
Science and Products
Filter Total Items: 96
Modeling future conservation of Hawaiian Honeycreepers by mosquito management and translocation of disease-tolerant Amakihi Modeling future conservation of Hawaiian Honeycreepers by mosquito management and translocation of disease-tolerant Amakihi
Avian malaria is an important cause of the decline of endemic Hawaiian honeycreepers. Because of the complexity of this disease system we used a computer model of avian malaria in forest birds to evaluate how two proposed conservation strategies: 1) reduction of habitat for mosquito larvae and 2) establishment of a low-elevation, malaria-tolerant honeycreeper (Hawaii Amakihi) to mid...
Authors
Peter H. F. Hobbelen, Michael D. Samuel, Dennis A. LaPointe, Carter T. Atkinson
Analysis of the trap gene provides evidence for the role of elevation and vector abundance in the genetic diversity of Plasmodium relictum in Hawaii Analysis of the trap gene provides evidence for the role of elevation and vector abundance in the genetic diversity of Plasmodium relictum in Hawaii
Background: The avian disease system in Hawaii offers an ideal opportunity to investigate host-pathogen interactions in a natural setting. Previous studies have recognized only a single mitochondrial lineage of avian malaria (Plasmodium relictum) in the Hawaiian Islands, but cloning and sequencing of nuclear genes suggest a higher degree of genetic diversity. Methods: In order to...
Authors
Margaret E.M. Farias, Carter T. Atkinson, Dennis A. LaPointe, Susan I. Jarvi
Ecology and conservation biology of avian malaria Ecology and conservation biology of avian malaria
Avian malaria is a worldwide mosquito-borne disease caused by Plasmodium parasites. These parasites occur in many avian species but primarily affect passerine birds that have not evolved with the parasite. Host pathogenicity, fitness, and population impacts are poorly understood. In contrast to continental species, introduced avian malaria poses a substantial threat to naive birds on...
Authors
Dennis A. LaPointe, Carter T. Atkinson, Michael D. Samuel
Keeping Hawai’i’s forest birds one step ahead of avian diseases in a warming world: a focus on Hakalau Forest National Wildlife Refuge. A case study from the National Conservation and Training Center Structured Decision Making Workshop Keeping Hawai’i’s forest birds one step ahead of avian diseases in a warming world: a focus on Hakalau Forest National Wildlife Refuge. A case study from the National Conservation and Training Center Structured Decision Making Workshop
This report is a product of a one-week workshop on using Structured Decision Making to identify and prioritize conservation actions to address the threat of climate change on Hawaii‟s native forest bird community. Specifically, t his report addresses the issue of global warming ‟s likely role in increasing disease prevalence in upper elevation forests of Hawaii, negatively impacting...
Authors
Eben H. Paxton, Jeff Burgett, Eve McDonald-Fadden, Ellen Bean, Carter T. Atkinson, Donna L. Ball, Colleen Cole, Lisa H. Crampton, Jim Kraus, Dennis A. LaPointe, Loyal Mehrhoff, Michael D. Samuel, Donna Brewer, Sarah J. Converse, Steve Morey
The dynamics, transmission, and population impacts of avian malaria in native hawaiian birds: A modeling approach The dynamics, transmission, and population impacts of avian malaria in native hawaiian birds: A modeling approach
We developed an epidemiological model of avian malaria (Plasmodium relictum) across an altitudinal gradient on the island of Hawaii that includes the dynamics of the host, vector, and parasite. This introduced mosquito‐borne disease is hypothesized to have contributed to extinctions and major shifts in the altitudinal distribution of highly susceptible native forest birds. Our goal was...
Authors
Michael D. Samuel, P.H.F. Hobbelen, F. Decastro, Jorge A. Ahumada, Dennis A. LaPointe, Carter T. Atkinson, Bethany L. Woodworth, P.J. Hart, D.C. Duffy
Trip report: pilot study of factors linking watershed function and coastal ecosystem health in American Samoa Trip report: pilot study of factors linking watershed function and coastal ecosystem health in American Samoa
Coral reef resources in the territory of American Samoa face significant problems from overfishing, non-point source pollution, global warming, and continuing population growth and development. The islands are still relatively isolated relative to other parts of the Pacific and have managed to avoid some of the more devastating invasive species that have reached other archipelagoes. As a...
Authors
Carter T. Atkinson, Arthur C. Medeiros
Thermal constraints to the sporogonic development and altitudinal distribution of avian malaria Plasmodium relictum in Hawai'i Thermal constraints to the sporogonic development and altitudinal distribution of avian malaria Plasmodium relictum in Hawai'i
More than half of the Hawaiian honeycreepers (Drepanidinae) known from historical records are now extinct. Introduced mosquito-borne disease, in particular the avian malaria Plasmodium relictum, has been incriminated as a leading cause of extinction during the 20th century and a major limiting factor in the recovery of remaining species populations. Today, most native Hawaiian bird...
Authors
Dennis A. LaPointe, M.L. Goff, Carter T. Atkinson
Efficacy of commercial canarypox vaccine for protecting Hawai'i 'Amakihi from field isolates of Avipoxvirus Efficacy of commercial canarypox vaccine for protecting Hawai'i 'Amakihi from field isolates of Avipoxvirus
At least three variants of avian pox virus are present in Hawai‘i - Fowlpox from domestic poultry and a group of genetically distinct viruses that cluster within two clades (Pox Variant 1 and Pox Variant 2) that are most similar to Canarypox based on DNA sequence of the virus 4b core protein gene. We tested whether Hawai‘i ‘Amakihi can be protected from wild virus isolates with an...
Authors
Carter T. Atkinson, Kimberly C. Wiegand, Dennis Triglia, Susan I. Jarvi
Efficacy of a commercial canarypox vaccine for protecting Hawai'i 'Amakihi from field isolates of avipoxvirus Efficacy of a commercial canarypox vaccine for protecting Hawai'i 'Amakihi from field isolates of avipoxvirus
At least three variants of avian pox virus are present in Hawai’i - Fowlpox from domestic poultry and a group of genetically distinct viruses that cluster within two clades (Pox Variant 1 and Pox Variant 2) that are most similar to Canarypox based on DNA sequence of the virus 4b core protein gene. We tested whether Hawai’i ‘Amakihi can be protected from wild virus isolates with an...
Authors
Carter T. Atkinson, Kimberly C. Wiegand, Dennis Triglia, Susan I. Jarvi
Changes in prevalence of avian malaria on the Alakai`i Plateau, Kaua`i. Hawai`i Changes in prevalence of avian malaria on the Alakai`i Plateau, Kaua`i. Hawai`i
We determined prevalence of malarial infections in samples of native and non-native forest birds that were sampled at three locations on the Alaka`i Plateau between 1994-1997 and again between 2007-2009. The three sites spanned the elevational range of the plateau and were located at Kawaikōī Stream (1100 m), the upper drainage of Mōhihi Stream (1250 m) and the vicinity of Halepa`akai...
Authors
Carter T. Atkinson, Ruth B. Utzurrum
Taqman Real-Time PCR Detects Avipoxvirus DNA in Blood of Hawaìi `Amakihi (Hemignathus virens) Taqman Real-Time PCR Detects Avipoxvirus DNA in Blood of Hawaìi `Amakihi (Hemignathus virens)
Authors
Margaret E.M. Farias, Dennis LaPointe, C. T. Atkinson, Christopher Czerwonka, Rajesh Shrestha, Susan I. Jarvi