981 resultados para IMS LD
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Julkaisussa: Libro di Benedetto Bordone nel qual si ragiona de tutte l'isole del mondo
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Nimeketiedot nimiönkehyksissä
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Nimeketiedot nimiönkehyksissä
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Nimeketiedot nimiönkehyksissä
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Nimeketiedot nimiönkehyksissä
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Nimeketiedot nimiönkehyksissä
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Julkaisussa: Cosmographia Petri Apiani, per Gemmam Frisium apud Lovanienses medicum & mathematicum insignemiam demum ab omnibus vindicata mendis
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Julkaisussa: Libro di Benedetto Bordone nel qual si ragiona de tutte l'isole del mondo
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Julkaisussa: L'Atlas de la mer, ou monde aquaticque
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Julkaisussa: La cosmographia y geographia del S. Hieronimo Girava Tarragones
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Julkaisussa: Comentari della Moscovia et parimente della Russia, et delle altre cose belle et notabili, composti gia latinamente
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Julkaisussa: Novus Atlas. Vol. III
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Julkaisussa: Atlas van zeevaert en koophandel door de geheele weereldt
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Kartta kuuluu A. E. Nordenskiöldin kokoelmaan
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The purpose of the present study was to investigate the effects of experimental diabetes on the oxidant and antioxidant status of latissimus dorsi (LD) muscles of male Wistar rats (220 ± 5 g, N = 11). Short-term (5 days) diabetes was induced by a single injection of streptozotocin (STZ, 50 mg/kg, iv; glycemia >300 mg/dl). LD muscle of STZ-diabetic rats presented higher levels of thiobarbituric acid reactive substances (TBARS) and chemiluminescence (0.36 ± 0.02 nmol/mg protein and 14706 ± 1581 cps/mg protein) than LD muscle of normal rats (0.23 ± 0.04 nmol/mg protein and 7389 ± 1355 cps/mg protein). Diabetes induced a 92% increase in catalase and a 27% increase in glutathione S-transferase activities in LD muscle. Glutathione peroxidase activity was reduced (58%) in STZ-diabetic rats and superoxide dismutase activity was similar in LD muscle of both groups. A positive correlation was obtained between catalase activity and the oxidative stress of LD, as evaluated in terms of TBARS (r = 0.78) and by chemiluminescence (r = 0.89). Catalase activity also correlated inversely with glutathione peroxidase activity (r = 0.79). These data suggest that an increased oxidative stress in LD muscle of diabetic rats may be related to skeletal muscle myopathy.