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1.
J Digit Imaging ; 22(6): 569-78, 2009 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-18931879

RESUMO

New technological advancements including multislice CT scanners and functional MRI, have dramatically increased the size and number of digital images generated by medical imaging departments. Despite the fact that the cost of storage is dropping, the savings are largely surpassed by the increasing volume of data being generated. While local area network bandwidth within a hospital is adequate for timely access to imaging data, efficiently moving the data between institutions requires wide area network bandwidth, which has a limited availability at a national level. A solution to address those issues is the use of lossy compression as long as there is no loss of relevant information. The goal of this study was to determine levels at which lossy compression can be confidently used in diagnostic imaging applications. In order to provide a fair assessment of existing compression tools, we tested and compared the two most commonly adopted DISCOM compression algorithms: JPEG and JPEG-2000. We conducted an extensive pan-Canadian evaluation of lossy compression applied to seven anatomical areas and five modalities using two recognized techniques: objective methods or diagnostic accuracy and subjective assessment based on Just Noticeable Difference. By incorporating both diagnostic accuracy and subjective evaluation techniques, enabled us to define a range of compression for each modality and body part tested. The results of our study suggest that at low levels of compression, there was no significant difference between the performance of lossy JPEG and lossy JPEG 2000, and that they are both appropriate to use for reporting on medical images. At higher levels, lossy JPEG proved to be more effective than JPEG 2000 in some cases, mainly neuro CT. More evaluation is required to assess the effect of compression on thin slice CT. We provide a table of recommended compression ratios for each modality and anatomical area investigated, to be integrated in the Canadian Association of Radiologists standard for the use of lossy compression in medical imaging.


Assuntos
Diagnóstico por Imagem/instrumentação , Diagnóstico por Imagem/normas , Processamento de Imagem Assistida por Computador/normas , Guias de Prática Clínica como Assunto , Processamento de Sinais Assistido por Computador/instrumentação , Algoritmos , Análise de Variância , Artefatos , Canadá , Feminino , Humanos , Angiografia por Ressonância Magnética/normas , Imageamento por Ressonância Magnética/normas , Masculino , Probabilidade , Controle de Qualidade , Curva ROC , Tomografia Computadorizada por Raios X/normas , Ultrassonografia Doppler/normas
2.
Proc Biol Sci ; 274(1625): 2611-9, 2007 Oct 22.
Artigo em Inglês | MEDLINE | ID: mdl-17686729

RESUMO

Many fishes possess specialized epidermal cells that are ruptured by the teeth of predators, thus reliably indicating the presence of an actively foraging predator. Understanding the evolution of these cells has intrigued evolutionary ecologists because the release of these alarm chemicals is not voluntary. Here, we show that predation pressure does not influence alarm cell production in fishes. Alarm cell production is stimulated by exposure to skin-penetrating pathogens (water moulds: Saprolegnia ferax and Saprolegnia parasitica), skin-penetrating parasites (larval trematodes: Teleorchis sp. and Uvulifer sp.) and correlated with exposure to UV radiation. Suppression of the immune system with environmentally relevant levels of Cd inhibits alarm cell production of fishes challenged with Saprolegnia. These data are the first evidence that alarm substance cells have an immune function against ubiquitous environmental challenges to epidermal integrity. Our results indicate that these specialized cells arose and are maintained by natural selection owing to selfish benefits unrelated to predator-prey interactions. Cell contents released when these cells are damaged in predator attacks have secondarily acquired an ecological role as alarm cues because selection favours receivers to detect and respond adaptively to public information about predation.


Assuntos
Cyprinidae/fisiologia , Células Epidérmicas , Perciformes/fisiologia , Feromônios/metabolismo , Raios Ultravioleta , Comunicação Animal , Animais , Evolução Biológica , Proliferação de Células , Cyprinidae/microbiologia , Cyprinidae/parasitologia , Epiderme/microbiologia , Epiderme/parasitologia , Epiderme/efeitos da radiação , Fungos , Perciformes/microbiologia , Perciformes/parasitologia , Comportamento Predatório , Trematódeos
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