491 resultados para Python regius


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[EN]Meagre, Argyrosomus regius A., is a new species for aquaculture in south Atlantic and Mediterranean regions, that can reach a mean fresh weight of 8.02±2.51g. at 95dah. However, hatchery techniques must be improved to optimize culture performance and larval quality. Eggs of meagre were cultured under intensive (75 indv.l-1 in 2m3 tanks) and semi-intensive system (7.5 indv.l-1 in 40m3 tanks) to evaluate the effect of the intensification on biological features, stress resistance and skeletal deformities. At 30dah, despite in semi-intensive system reared larvae a higher total length (19.08± 2.3mm vs 16.00±1.54mm), dry body weight (13.09± 2.43mg vs 6.46±0.52mg), and survival after the activity test (75.0± 13.8% vs 53.3±11.5%) was found, the use of intensive systems were also very suitable and cost-effective for larval rearing of this species

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Máster Oficial en Cultivos Marinos. Trabajo presentado como requisito parcial para la obtención del Título de Máster Oficial en Cultivos Marinos, otorgado por la Universidad de Las Palmas de Gran Canaria (ULPGC), el Instituto Canario de Ciencias Marinas (ICCM), y el Centro Internacional de Altos Estudios Agronómicos Mediterráneos de Zaragoza (CIHEAM)

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Máster Oficial en Cultivos Marinos. Trabajo presentado como requisito parcial para la obtención del Título de Máster Oficial en Cultivos Marinos, otorgado por la Universidad de Las Palmas de Gran Canaria (ULPGC), el Instituto Canario de Ciencias Marinas (ICCM), y el Centro Internacional de Altos Estudios Agronómicos Mediterráneos de Zaragoza (CIHEAM)

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Programa de doctorado: Acuicultura: producción controlada de animales acuáticos

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[EN]The present study aimed to determine the spawning efficacy, egg quality and quantity of captive breed meagre induced with a single gonadotrophin-releasing hormone agonist (GnRHa) injection of 0, 1, 5, 10, 15, 20, 25, 30, 40 or 50 μg kg–1 to determine a recommended optimum dose to induce spawning. The doses 10, 15 and 20 μg kg–1 gave eggs with the highest quality (measured as: percentage of viability, floating, fertilisation and hatch) and quantity (measured as: total number of eggs, number of viable eggs, number of floating eggs, number of hatched larvae and number of larvae that reabsorbed the yolk sac). All egg quantity parameters were described by Gaussian regression analysis with R2 = 0.89 or R2 = 0.88. The Gaussian regression analysis identified that the optimal dose used was 15 μg kg–1. The regression analysis highlighted that this comprehensive study examined doses that ranged from low doses insufficient to stimulate a high spawning response (significantly lower egg quantities, p < 0.05) compared to 15 μg kg–1 through to high doses that stimulated the spawning of significantly lower egg quantities and eggs with significantly lower quality (egg viability). In addition, the latency period (time from hormone application to spawning) decreased with increasing doses to give a regression (R2 = 0.93), which suggests that higher doses accelerated oocyte development that in turn reduced egg quality and quantity. The identification of an optimal dose for the spawning of meagre, which has high aquaculture potential, represents an important advance for the Mediterranean aquaculture industry.

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[EN]Eighteen mature meagre (Argyrosomus regius) broodstock, born in captivity, were divided in 3 experimental groups in ratios of 3 ♀ and 3 ♂ each. One group was inducted by injections of hCG, the other with GnRHa and the last group with implants of GnRHa. In all three treatments all females responded positively to the hormonal treatment. Statistically differences were found, in the number of spawns per induction, of females induced with hCG with the GnRHa treatments. Latency period was longer in spawns from GnRHa implants, and showed statistically differences with the other two treatments.

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[EN]In the present study, the effect of three different hormonal treatments were tested (GnRHA and hCG injected and GnRHa implanted), in meagre (Argyrosomus regius) broodstock born in captivity, and their production. The highest productions per kg of female and spawn: number of eggs, fertilized eggs, hatched larvae, and larvae 3 days old after hatching, corresponds to the treatment of GnRHa injected. The number of viable eggs, hatched eggs and larvae 3 days with GnRha injected was significantly different from those treated with hGC. No significant differences were observed in production per kg female and induction in the different hormonal treatments,

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[EN]The best results in all quality parameters, were obtained in the spawns of the broodstock injected with GnRHa, having 98,7 + 1,4% of fertilized eggs, 62,24 ± 27,47 % viable eggs, 92,56 ± 17,19 % hatching and 92,73 ± 10,52 % 3 day old larvae after hatching. Percentage of viable eggs was lower in the spawns of the broomstick injected with hCG, and had significant differences when compared with GnRHa broodstock treatments. 3 day old larvae and hatchings, obtained from the broomstock injected with GnRHa showed significant differences to the rest of the hormonal treatments.

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Lo scopo della tesi è quello di descrivere e mettere a confronto tre diversi linguaggi, e quindi approcci, alla programmazione server-side e di back-end, ovvero il linguaggio PHP, il linguaggio Python ed il linguaggio Javascript, utilizzato però per una programmazione “Server Side”, e quindi associato al framework NodeJS. Questo confronto si pone l’obiettivo di sottolineare le differenti caratteristiche di ogni linguaggio, gli scopi a cui esso maggiormente si addice e di fornire una sorta di guida per far in modo che si possa comprendere al meglio quale dei tre linguaggi maggiormente usati per la programmazione backend si conformi meglio all’obiettivo prepostosi.

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Lo scopo di questa tesi è dimostrare quale sia il miglior Web Framework con linguaggio Python fra i tre principali esponenti: Django, web2py e TurboGears. Inizialmente verrà effettuata un’analisi generale sui Web Framework, in particolare quelli con architettura MVC poiché sarà l’architettura utilizzata da Django, web2py e TurboGears. Successivamente, per ogni Web Framework verrà analizzata la struttura generale e i componenti core degli stessi. Tuttavia per stabilire chi sia il migliore fra di essi bisogna anche analizzare come essi gestiscono altri ambiti dello sviluppo web e quindi vengono analizzati tutti i tools messi a disposizione dai Web Framework. Alla fine verranno tratte le conclusioni in cui verrà chiarito quale sia il Web Framework migliore per uno sviluppatore e perché, andando a riassumere le caratteristiche di tutti e tre.

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Mode of access: Internet.