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1.
An Acad Bras Cienc ; 95(suppl 2): e20230507, 2023.
Article in English | MEDLINE | ID: mdl-38055445

ABSTRACT

As a result of human activities and natural dispersal, exotic species can be brought to new areas, where they become established and spread, becoming invaders. These species are responsible for the loss of biodiversity and cause ecosystemic harm throughout the world. In this paper, we report the rapid, broad geographic expansion of the invasive fly Drosophila nasuta in Brazil. An 84% increase was found in its area of occupation in the country compared to previous studies. The present data reveal its arrival to the Pantanal wetlands in a location more than one thousand kilometers from the closest previous record in the Cerrado biome. We present the first record of D. nasuta in the Atlantic Forest in the states of Paraíba and Bahia. We report its introduction in the Amazon Forest in the state of Amazonas approximately 700 kilometers from previous records. The relative abundance of D. nasuta in this biome increased fivefold in comparison to a previous study. In the first decade of invasion in Brazil, D. nasuta has already colonized more than half of the country. The present data reveal its invasive potential and underscore the importance of following up the possible negative effects of this biological invasion.


Subject(s)
Drosophila , Ecosystem , Animals , Humans , Brazil , Biodiversity , Occupations
2.
Acta sci. vet. (Online) ; 44: 01-10, 2016. ilus, tab
Article in Portuguese | VETINDEX | ID: vti-722736

ABSTRACT

Background: The digital infrared imaging thermography is a non-invasive imaging exam of easy performance accurately to measure temperatures of the areas of the animals body. The objective was to study the physiological variations of the surface temperature of the mammary gland, vulva, pelvis, thorax and abdomen with digital infrared imaging thermography in negative dairy cattle with California mastitis test (CMT) in different seasons, and the influence of climatic factors in these temperatures. Materials, Methods & Results: Eighteen Holstein cows, pregnant and non pregnant were used, negative for the California Mastitis Test, grazing on Urochloa decumbens pasture, receiving 2 kg of corn / animal / day, mineral mix and ad libitum water. Infrared thermography was performed every 30 days, for five months: January, February, March, April and May with thermographic camera (E40®, FLIR, Sweden) in the areas of the body: vulva, mammary gland, pelvis, abdomen and thorax. The thermal images (thermograms) were processed using the Flir Tools 2.1® program. The climatic factors: room temperature and relative humidity were monitored with globe thermometer (ITitwtg 2000®, Instrutemp, Brazil). Data were analyzed by analysis of variance and the average compared by Tukey test, with level of significance was set at (P 0.05). For room temperature data, relative humidity, rectal temperature [...](AU)


Subject(s)
Animals , Female , Cattle , Thermography , Thermography/veterinary , Body Temperature , Physiological Phenomena , Climate Change , Mammary Glands, Animal , Pelvis , Thorax , Abdomen
3.
Acta sci. vet. (Impr.) ; 44: 01-10, 2016. ilus, tab
Article in Portuguese | VETINDEX | ID: biblio-1457466

ABSTRACT

Background: The digital infrared imaging thermography is a non-invasive imaging exam of easy performance accurately to measure temperatures of the areas of the animals body. The objective was to study the physiological variations of the surface temperature of the mammary gland, vulva, pelvis, thorax and abdomen with digital infrared imaging thermography in negative dairy cattle with California mastitis test (CMT) in different seasons, and the influence of climatic factors in these temperatures. Materials, Methods & Results: Eighteen Holstein cows, pregnant and non pregnant were used, negative for the California Mastitis Test, grazing on Urochloa decumbens pasture, receiving 2 kg of corn / animal / day, mineral mix and ad libitum water. Infrared thermography was performed every 30 days, for five months: January, February, March, April and May with thermographic camera (E40®, FLIR, Sweden) in the areas of the body: vulva, mammary gland, pelvis, abdomen and thorax. The thermal images (thermograms) were processed using the Flir Tools 2.1® program. The climatic factors: room temperature and relative humidity were monitored with globe thermometer (ITitwtg 2000®, Instrutemp, Brazil). Data were analyzed by analysis of variance and the average compared by Tukey test, with level of significance was set at (P 0.05). For room temperature data, relative humidity, rectal temperature [...]


Subject(s)
Female , Animals , Cattle , Physiological Phenomena , Climate Change , Body Temperature , Thermography , Thermography/veterinary , Abdomen , Mammary Glands, Animal , Pelvis , Thorax
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