898 resultados para Calligraphy, Japanese.


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Enterococcus faecalis (E. faecalis), conhecidamente patógeno oportunista, tem sido frequentemente associado a infecções sistêmicas graves. É também encontrado na cavidade oral, com destaque em infecção endodôntica refratária. O objetivo deste estudo foi avaliar características moleculares de E. faecalis isolados de infecção endodôntica primária no Brasil e comparar com isolados orais e não orais de pacientes do Reino Unido e do Japão, assim como E. faecalis resistentes à vancomicina. O presente estudo também investigou o relacionamento entre E. faecalis de diferentes origens (oral e não oral) e de diferentes áreas geográficas para obter uma melhor compreensão do envolvimento dos diferentes reservatórios no surgimento e propagação de clones virulentos, aqueles que possuem genes que conferem infectividade e virulência, assim como resistência aos antibióticos. Para tal, foram estudados E. faecalis isolados em infecções endodônticas no Brasil (n = 20) e orais no Reino Unido (n = 10), e em infecções não orais no Japão (n = 9). Além disso, 20 E. faecalis isolados ambientais do Hospital Universitário de Gales (Cardiff, Reino Unido), classificados como Enterococcus resistentes à vancomicina (VRE) também foram examinados. A Concentração Inibitória Mínima (CIM) dos isolados do Brasil foi obtida pelo método de diluição em agar de acordo com as recomendações do Clinical and Laboratory Standards Institute (CLSI). Reação em cadeia da polimerase (inglês - PCR) foi a técnica empregada para detectar os genes de virulência e aqueles associados à resistência aos antibióticos, enquanto Reação de Amplificação Aleatória de DNA Polimórfico (inglês - RAPD-PCR) foi escolhida para a tipagem molecular. Dentre os genes de virulência examinados, o gene que codifica a gelatinase gelE foi o mais prevalente entre os isolados (77-100%). Entre isolados orais, foram detectados os genes agg de substâncias de agregação, esp de proteína de evasão imune, cylB de citolisina, genes de resistência à tetraciclina tetM e tetL e à eritromicina ermB com diferentes prevalências. Os isolados clínicos hospitalares do Japão apresentaram perfil genético similar aos isolados orais, mas com maior prevalência de ermB e cylB. Todas as amostras de VRE foram positivas para os genes gelE, esp, agg, vanA, ermB e tetM, 95% foram positivos para cylB e 17% positivo para tetL. Todas as amostras foram negativas para ermA, asa373, vanB, vanC1 e vanC2/3. RAPD-PCR revelou agrupamento de VRE em comparação com outros isolados. Neste estudo, os isolados de E. faecalis de infecções orais apresentaram genes de resistência à tetraciclina, um antimicrobiano frequentemente usado no tratamento local de infecções dentárias, abrindo um debate muito importante sobre o papel e a eficácia desta droga para infecções orais. Claramente, são necessários mais estudos nesta área principalmente em relação à expressão de fatores de virulência entre isolados endodônticos para melhor nortear as estratégias de tratamento. As pressões externas no microambiente dos canais radiculares podem ser responsáveis pela seleção de espécies mais resistentes e virulentas. Por fim, embora isolados orais apresentem genes de virulência fundamentais para a patogenicidade, estes foram detectados em menor incidência em comparação com os isolados não-orais e VRE.

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Walleye pollock (Theragra chalcogramma) is widely distributed in the North Pacific Ocean and plays an important role in coastal subarctic ecosystems. The Japanese Pacific population of this species is one of the most important demersal fishes for commercial fisheries in northern Japan. The population is distributed along the Pacific coast of Hokkaido and the Tohoku area (Fig. 1), which is the southern limit of distribution of the species in the western North Pacific. In Funka Bay, the main spawning ground for this population, pollock spawn from December to March (Kendall and Nakatani, 1992). Planktonic eggs and larvae are transported into the bay, where juveniles usually remain until late July when they reach 60−85 mm in total length (Hayashi et al., 1968; Nakatani and Maeda, 1987). These juvenile pollock then migrate from Funka Bay eastward to the Doto area off southeastern Hokkaido (Honda et al., 2004). Many studies on eggs, larvae, and juveniles of the species have been conducted in or near Funka Bay, but little information is available on the ecology of the early life stages in the Tohoku area. Hashimoto and Ishito (1991) suggested that eggs are transported from Funka Bay southward to the Tohoku area by the coastal branch of the Oyashio Current, but there has been no study to verify this hypothesis.

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[es]Para la realización del presente estudio, se utilizaron 50 ejemplares de Ruditapes Decussatus o almeja fina y otros 50 de Ruditapes Philippinarum o almeja japonesa, recogidas y seleccionadas por mariscadores profesionales de la Bahía de Santoña (Cantabria). La temperatura influye en las tasas fisiológicas, llegando a generar finalmente alteraciones en el metabolismo del organismo. Por ello, una variable de interés para el estudio se trata de la tasa metabólica, la cual puede ser estimada a través de la medición de la tasa de consumo de oxígeno (VO2). El objetivo final de este estudio es, por tanto, observar el efecto cinético de la temperatura y la aclimatación sobre el metabolismo de ambas especies de almejas, distribuidas en cuatro grupos de estudio (almeja fina y japonesa aclimatadas a 12oC y 22oC), midiendo la VO2 a diferentes temperaturas de exposición (7oC, 12oC, 17oC, 22oC y 27oC). Utilizando el la respirometría como medio para calcular la VO2 y el cálculo de la Q10 para determinar las tasas metabólicas. Los resultados ponen de manifiesto que en tres de los cuatro casos no se observaron diferencias significativas entre el metabolismo rutina y el metabolismo estándar. También se comprobó positivamente el efecto cinético de la temperatura sobre la VO2; así como la presencia de un intervalo de temperaturas, en las que se realiza compensación, más amplio para almeja japonesa que para almeja fina.

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Knowledge of the distribution and biology of the ragfish, Icosteus aenigmaticus, an aberrant deepwater perciform of the North Pacific Ocean, has increased slowly since the first description of the species in the 1880’s which was based on specimens retrieved from a fish monger’s table in San Francisco, Calif. As a historically rare, and subjectively unattractive appearing noncommercial species, ichthyologists have only studied ragfish from specimens caught and donated by fishermen or by the general public. Since 1958, I have accumulated catch records of >825 ragfish. Specimens were primarily from commercial fishermen and research personnel trawling for bottom and demersal species on the continental shelves of the eastern North Pacific Ocean, Gulf of Alaska, Bering Sea, and the western Pacific Ocean, as well as from gillnet fisheries for Pacific salmon, Oncorhynchus spp., in the north central Pacific Ocean. Available records came from four separate sources: 1) historical data based primarily on published and unpublished literature (1876–1990), 2) ragfish delivered fresh to Humboldt State University or records available from the California Department of Fish and Game of ragfish caught in northern California and southern Oregon bottom trawl fisheries (1950–99), 3) incidental catches of ragfish observed and recorded by scientific observers of the commercial fisheries of the eastern Pacific Ocean and catches in National Marine Fisheries Service trawl surveys studying these fisheries from 1976 to 1999, and 4) Japanese government research on nearshore fisheries of the northwestern Pacific Ocean (1950–99). Limited data on individual ragfish allowed mainly qualitative analysis, although some quantitative analysis could be made with ragfish data from northern California and southern Oregon. This paper includes a history of taxonomic and common names of the ragfish, types of fishing gear and other techniques recovering ragfish, a chronology of range extensions into the North Pacific and Bering Sea, reproductive biology of ragfish caught by trawl fisheries off northern California and southern Oregon, and topics dealing with early, juvenile, and adult life history, including age and growth, food habits, and ecology. Recommendations for future study are proposed, especially on the life history of juvenile ragfish (5–30 cm FL) which remains enigmatic.

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Fishery science pioneers often faced challenges in their field work that are mostly unknown to modern biologists. Some of the travails faced by ichthyologist and, later, fishery biologist Charles Henry Gilbert (1859-1928) during his service as Naturalist-in-Charge of the North Pacific cruise ofthe U.S. Bureau of Fisheries Steamer Albatross in 1906, are described here, as are accomplishments of the cruise. The vessel left San Francisco, Calif., on 3 May 1906, just after the great San Francisco earthquake, for scientific exploration of waters of the Aleutian islands, Bering Sea, Kamchatka, Sakhalin, and Japan, returning to San Francisco in December. Because the expedition occurred just after the war between Japan and Russia of 1904-05 floating derelict mines in Japanese waters were often a menace. Major storms caused havoc in the region, and the captain of the Albatross, Lieutenant Commander LeRoy Mason Garrett (1857-1906), U.S.N., was lost at sea, apparently thrown from the vessel during a sudden storm on the return leg of the cruise. Despite such obstacles, Gilbert and the Albatross successfully completed their assigned chores. They occupied 339 dredging and 48 hydrographic stations, and discovered over 180 new species of fishes and many new species of invertebrates. The expedition's extensive biological collections spawned over 30 descriptive publications, some of which remain today as standards of knowledge.

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The California fishery for red sea urchins, Strongylocentrotus franciscanus, has undergone explosive growth in recent years and is approaching full exploitation. Thus, there is considerable interest in enhancing stocks to maintain a high rate of landings. Fishable stocks of red sea urchins in different areas appear to be limited at three stages in their life history: By the availability of larvae, by the survival of newly settled to mid-sized animals, and by the food available to support growth and reproduction of larger animals. Here I review other efforts, notably the extensive Japanese work, to enhance fishable stocks of benthic marine invertebrates, and consider the potential options for red sea urchins at different points of limitation. These include collecting or culturing seed for outplanting, physical habitat improvement measures, improving the food supply, and conservation measures to protect existing stocks until alternate methods are proven and in place. The options are compared in terms of biological feasibility, capital and labor requirements, and potential implications for change in the structure of the fishing industry.

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