59 resultados para Puna


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A ordem Didelphimorphia, de marsupiais americanos, apresenta 19 gêneros e 96 espécies, todos membros da família Didelphidae, que é dividida em duas subfamílias, Caluromyinae e Didelphinae. A subfamília Didelphinae contém (não apenas) as tribos Didelphini e Metachirini. A tribo Didelphini compreende 15 espécies de quatro gêneros: Chironectes (1 espécie), Lutreolina (1), Didelphis (6) e Philander (7) e a tribo Metachirini é monotípica, com apenas uma espécie do gênero Metachirus. Estes cinco gêneros encontram-se distribuídos amplamente pelas Américas, desde o sul do Canadá até a região central da Argentina. O objetivo deste estudo foi buscar identificar e explicar, através de análise pan-biogeográfica, os padrões de distribuição das espécies destes cinco gêneros. Para tal, foi feito um levantamento em banco de dados, coleções científicas e artigos científicos para a obtenção de dados sobre as localidades de registro de cada espécie. Estas foram então marcadas em mapas e a partir destes, as localidades de ocorrência foram conectadas com linhas de menor distância para formação dos traços individuais. Pela sobreposição dos traços individuais chegou-se aos traços generalizados e do encontro destes, aos nós biogeográficos. Os pontos de ocorrência foram também plotados em mapas de biomas para análise. Encontramos três traços generalizados e dois nós biogeográficos, um no centro da Bolívia na província biogeográfica de Puna e outro na Argentina, na província de Misiones. Quatro espécies não participaram de nenhum dos traços generalizados, provavelmente devido à sua distribuição mais restrita (Philander deltae, P. andersoni, P. olrogi e P. mcilhennyi). Chironectes minimus e Metachirus nudicaudatus tiveram seus traços coincidentes com dois traços generalizados, o que está de acordo com suas divisões de subespécies. Identificamos os diferentes padrões existentes para o norte da América do Sul (Venezuela) já apontado por diversos autores, porém apenas quando analisadas as subespécies em separado. Alguns limites para a distribuição das espécies puderam ser identificados, como por exemplo o istmo de Tehuantepec, no México, para Chironectes minimus e Metachirus nudicaudatus e o limite da região neotropical para P. opossum e D. marsupialis. O limite de distribuição sul de Philander opossum e P. frenatus é provavelmente o rio Paraguai, que deve servir de barreira para o contato entre as duas espécies. A descaracterização dos ambientes naturais pelo desmatamento vem alterando os padrões naturais de distribuição das espécies, com o registro de espécies de áreas abertas em biomas de mata. Lutreolina crassicaudata apresenta distribuição disjunta, ocupando duas áreas de vegetação aberta, uma no noroeste e outra no centro e sudeste da América do Sul, padrão provavelmente gerado pelos períodos de retração e expansão de áreas de savana do Mioceno superior ao Holoceno, levando à captura destes enclaves de vegetação aberta, com seu isolamento por áreas de floresta. Os nós e traços generalizados aqui identificados coincidiram com os encontrados por outros autores. Apesar da pan-biogeografia poder ser usada para propor áreas de proteção ambiental, nos locais em que encontramos os nós biogeográficos já existem unidades de conservação, não havendo assim necessidade de propor novas áreas no caso desses marsupiais. Ainda existe uma grande necessidade de um melhor conhecimento da distribuição e taxonomia das espécies estudadas, o que promoveria um melhor entendimento dos padrões biogeográficos existentes

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VAL-II是当今世界上得到广泛应用的一种高级机器人控制系统和编程语言,尤以其卓越的管理通讯功能越来越受到广大用户的欢迎。它采用DDCMP协议的一个子集,通过计算机局部网络来支持与管理计算机的通讯,管理计算机能完全监控VAL-II系统的运行,为离线编程和面向任务型控制创造了条件。基于对PUNA 562机器人中的VAL-II系统目标代码的剖析,本文用IBM PC/AT计算机成功地开发出了VAL-II通信子系统的中层和底层,并与Unimation 公司的DDCMP 和 TESTDDC测试程序进行了联调,证实了其有效性。本文介绍了该子系统的结构,功能及其运行结果。

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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia Química e Biológica Ramo de Processos Químicos

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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia Química

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Investigación sobre el efecto positivo de los medios de comunicación, concretamente la televisión, como instrumento de enriquecimiento cultural y social del medio rural. En la investigación participan 1264 alumnos y 109 docentes de la Puna Argentina, zona de economía de subsistencia. Se comprobó que los niños que ven televisión leen más, se interrelacionan más con el resto de las personas y hablan más de los problemas sociales, que los niños que no la ven. Además, muestran un mayor interés por el estudio y más ganas de salir del medio rural en el que viven. Como conclusión, se extrae que una educación en medios les permite superar la descontextualización y el aislamiento que sufren en la región y fortalecer sus capacidades expresivas y de comunicación.

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Background and Aims Ptilotus polystachyus (green mulla mulla; ptilotus) is a short-lived perennial herb that occurs widely in Australia in arid and semi-arid regions with nutrient poor soils. As this species shows potential for domestication, its response to addition of phosphorus (P) and nitrogen (N) was compared to a variety of the domesticated exotic perennial pasture herb Cichorium intybus (chicory), ‘Puna’. Methods Pots were filled with 3 kg of an extremely nutrient-deficient sterilized field soil that contained 3 mg kg−1 mineral N and 2 mg kg−1 bicarbonate-extractable P. The growth and P and N accumulation of ptilotus and chicory in response to seven rates of readily available phosphorus (0–300 mg P pot−1) and nitrogen (N) (0–270 mg N pot−1) was examined. Key Results Ptilotus grew extremely well under low P conditions: shoot dry weights were 23, 6 and 1·7 times greater than for chicory at the three lowest levels of P addition, 0, 15 and 30 mg P pot−1, respectively. Ptilotus could not downregulate P uptake. Concentrations of P in shoots approached 4 % of dry weight and cryo-scanning electron microscopy and X-ray microanalysis showed 35–196 mm of P in cell vacuoles in a range of tissues from young leaves. Ptilotus had a remarkable tolerance of high P concentrations in shoots. While chicory exhibited symptoms of P toxicity at the highest rate of P addition (300 mg P pot−1), no symptoms were present for ptilotus. The two species responded in a similar manner to addition of N. Conclusions In comparison to chicory, ptilotus demonstrated an impressive ability to grow well under conditions of low and high P availability. Further study of the mechanisms of P uptake and tolerance in ptilotus is warranted.

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We studied the P-T-t evolution of a mid-crustal igneous-metamorphic segment of the Famatinian Belt in the eastern sector of the Sierra de Velasco during its exhumation to the upper crust. Thermobarometric and geochronological methods combined with field observations permit us to distinguish three tectonic levels. The deepest Level I is represented by metasedimentary xenoliths and characterized by prograde isobaric heating at 20-25 km depth. Early/Middle Ordovician granites that contain xenoliths of Level I intruded in the shallower Level II. The latter is characterized by migmatization coeval with granitic intrusions and a retrograde isobaric cooling P-T path at 14-18 km depth. Level II was exhumed to the shallowest supracrustal Level III, where it was intruded by cordierite-bearing granites during the Middle/Late Ordovician and its host-rock was locally affected by high temperature-low pressure HT/LP metamorphism at 8-10 km depth. Level III was eventually intruded by Early Carboniferous granites after long-term slow exhumation to 6-7 km depth. Early/Middle Ordovician exhumation of Level II to Level III (Exhumation Period I,0.25-0.78 mm/yr) was faster than exhumation of Level III from the Middle/Late Ordovician to the Lower Carboniferous (Exhumation Period II, 0.01-0.09 mm/yr). Slow exhumation rates and the lack of regional evidence of tectonic exhumation suggest that erosion was the main exhumation mechanism of the Famatinian Belt. Widespread slow exhumation associated with crustal thickening under a HT regime suggests that the Famatinian Belt represents the middle crust of an ancient Altiplano-Puna-like orogen. This thermally weakened over-thickened Famatinian crust was slowly exhumed mainly by erosion during similar to 180 Myr. (C) 2010 International Association for Gondwana Research. Published by Elsevier B.V. All rights reserved.

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Incluye Bibliografía

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We revisit species diversity within Oreobates (Anura: Strabomantidae) by combining molecular phylogenetic analyses of the 16S rRNA amphibian barcode fragment with the study of the external morphology of living and preserved specimens. Molecular and morphological evidence support the existence of 23 species within Oreobates, and three additional candidate species (Oreobates sp. [Ca JF809995], Oreobates sp. [Ca EU368903], Oreobates cruralis [Ca EU192295]). We describe and name three new species from the Andean humid montane forests of Departamento Cusco, southern Peru: O. amarakaeri New Species from Rio Nusinuscato and Rio Mabe, at elevations ranging from 670 to 1000 m in the Andean foothills; O. machiguenga, new species, from Rio Kimbiri (1350 m), a small tributary of the Apurimac River, in the western versant of Cordillera Vilcabamba; and O. gemcare, new species, from the Kosnipata Valley at elevations ranging from 2400 to 2800 m. The three new species are readily distinguished from all other Oreobates by at least one qualitative morphological character. Three species are transferred to Oreobates from three genera of Strabomantidae: Hypodactylus lundbergi, Pristimantis crepitans, and Phrynopus ayacucho (for which the advertisement call, coloration in life, and male characteristics are described for first time). Oreobates simmonsi is transferred to the genus Lynchius. Hylodes verrucosus is considered a junior synonym of Hylodes philippi. In addition, H. philippi is removed from the synonymy of O. quixensis and considered a nomem dubium within Hypodactylus. The inclusion of Phrynopus ayacucho in Oreobates extends the ecological range of the genus to the cold Andean puna. Oreobates is thus distributed from the Amazonian lowlands in southern Colombia to northern Argentina, reaching the Brazilian Atlantic dry forests in eastern Brazil, across an altitudinal range from ca. 100 to 3850 m.

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VIII Congreso geológico de España, Oviedo, 17-19 julio 2012

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Curved mountain belts have always fascinated geologists and geophysicists because of their peculiar structural setting and geodynamic mechanisms of formation. The need of studying orogenic bends arises from the numerous questions to which geologists and geophysicists have tried to answer to during the last two decades, such as: what are the mechanisms governing orogenic bends formation? Why do they form? Do they develop in particular geological conditions? And if so, what are the most favorable conditions? What are their relationships with the deformational history of the belt? Why is the shape of arcuate orogens in many parts of the Earth so different? What are the factors controlling the shape of orogenic bends? Paleomagnetism demonstrated to be one of the most effective techniques in order to document the deformation of a curved belt through the determination of vertical axis rotations. In fact, the pattern of rotations within a curved belt can reveal the occurrence of a bending, and its timing. Nevertheless, paleomagnetic data alone are not sufficient to constrain the tectonic evolution of a curved belt. Usually, structural analysis integrates paleomagnetic data, in defining the kinematics of a belt through kinematic indicators on brittle fault planes (i.e., slickensides, mineral fibers growth, SC-structures). My research program has been focused on the study of curved mountain belts through paleomagnetism, in order to define their kinematics, timing, and mechanisms of formation. Structural analysis, performed only in some regions, supported and integrated paleomagnetic data. In particular, three arcuate orogenic systems have been investigated: the Western Alpine Arc (NW Italy), the Bolivian Orocline (Central Andes, NW Argentina), and the Patagonian Orocline (Tierra del Fuego, southern Argentina). The bending of the Western Alpine Arc has been investigated so far using different approaches, though few based on reliable paleomagnetic data. Results from our paleomagnetic study carried out in the Tertiary Piedmont Basin, located on top of Alpine nappes, indicate that the Western Alpine Arc is a primary bend that has been subsequently tightened by further ~50° during Aquitanian-Serravallian times (23-12 Ma). This mid-Miocene oroclinal bending, superimposing onto a pre-existing Eocene nonrotational arc, is the result of a composite geodynamic mechanism, where slab rollback, mantle flows, and rotating thrust emplacement are intimately linked. Relying on our paleomagnetic and structural evidence, the Bolivian Orocline can be considered as a progressive bend, whose formation has been driven by the along-strike gradient of crustal shortening. The documented clockwise rotations up to 45° are compatible with a secondary-bending type mechanism occurring after Eocene-Oligocene times (30-40 Ma), and their nature is probably related to the widespread shearing taking place between zones of differential shortening. Since ~15 Ma ago, the activity of N-S left-lateral strike-slip faults in the Eastern Cordillera at the border with the Altiplano-Puna plateau induced up to ~40° counterclockwise rotations along the fault zone, locally annulling the regional clockwise rotation. We proposed that mid-Miocene strike-slip activity developed in response of a compressive stress (related to body forces) at the plateau margins, caused by the progressive lateral (southward) growth of the Altiplano-Puna plateau, laterally spreading from the overthickened crustal region of the salient apex. The growth of plateaux by lateral spreading seems to be a mechanism common to other major plateaux in the Earth (i.e., Tibetan plateau). Results from the Patagonian Orocline represent the first reliable constraint to the timing of bending in the southern tip of South America. They indicate that the Patagonian Orocline did not undergo any significant rotation since early Eocene times (~50 Ma), implying that it may be considered either a primary bend, or an orocline formed during the late Cretaceous-early Eocene deformation phase. This result has important implications on the opening of the Drake Passage at ~32 Ma, since it is definitely not related to the formation of the Patagonian orocline, but the sole consequence of the Scotia plate spreading. Finally, relying on the results and implications from the study of the Western Alpine Arc, the Bolivian Orocline, and the Patagonian Orocline, general conclusions on curved mountain belt formation have been inferred.

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This chapter reviews the history of study and the current status of Mid-Holocene climatic and cultural change in the South Central Andes, which host a wide range of different habitats from Pacific coastal areas up to extremely harsh cold and dry environments of the high mountain plateau, the altiplano or the puna. Paleoenvironmental information reveals high amplitude and rapid changes in effective moisture during the Holocene period and, consequently, dramatically changing environmental conditions. Therefore, this area is suitable to study the response of hunting and gathering societies to environmental changes, because the smallest variations in the climatic conditions have large impacts on resources and the living space of humans. This chapter analyzes environmental and paleoclimatic information from lake sediments, ice cores, pollen profiles, and geomorphic processes and relates these with the cultural and geographic settlement patterns of human occupation in the different habitats in the area of southern Peru, southwest Bolivia, northwest Argentina, and north Chile and puts in perspective of the early and late Holocene to present a representative range of environmental and cultural changes. It has been found that the largest changes took place around 9000 cal yr BP when the humid early Holocene conditions were replaced by extremely arid but highly variable climatic conditions. These resulted in a marked decrease of human occupation, “ecological refuges,” increased mobility, and an orientation toward habitats with relatively stable resources (such as the coast, the puna seca, and “ecological refuges”).