312 resultados para Arches.


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Vitamin A is required for reproduction and normal embryonic development. We have determined that all-trans-retinoic acid (atRA) can support development of the mammalian embryo to parturition in vitamin A-deficient (VAD) rats. At embryonic day (E) 0.5, VAD dams were fed purified diets containing either 12 μg of atRA per g of diet (230 μg per rat per day) or 250 μg of atRA per g of diet (4.5 mg per rat per day) or were fed the purified diet supplemented with a source of retinol (100 units of retinyl palmitate per day). An additional group was fed both 250 μg of atRA per g of diet in combination with retinyl palmitate. Embryonic survival to E12.5 was similar for all groups. However, embryonic development in the group fed 12 μg of atRA per g of diet was grossly abnormal. The most notable defects were in the region of the hindbrain, which included a loss of posterior cranial nerves (IX, X, XI, and XII) and postotic pharyngeal arches as well as the presence of ectopic otic vesicles and a swollen anterior cardinal vein. All embryonic abnormalities at E12.5 were prevented by feeding pharmacological amounts of atRA (250 μg/g diet) or by supplementation with retinyl palmitate. Embryos from VAD dams receiving 12 μg of atRA per g of diet were resorbed by E18.5, whereas those in the group fed 250 μg of atRA per g of diet survived to parturition but died shortly thereafter. Equivalent results were obtained by using commercial grade atRA or atRA that had been purified to eliminate any potential contamination by neutral retinoids, such as retinol. Thus, 250 μg of atRA per g of diet fed to VAD dams (≈4.5 mg per rat per day) can prevent the death of embryos at midgestation and prevents the early embryonic abnormalities that arise when VAD dams are fed insufficient amounts of atRA.

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Gnathostome vertebrates have multiple members of the Dlx family of transcription factors that are expressed during the development of several tissues considered to be vertebrate synapomorphies, including the forebrain, cranial neural crest, placodes, and pharyngeal arches. The Dlx gene family thus presents an ideal system in which to examine the relationship between gene duplication and morphological innovation during vertebrate evolution. Toward this end, we have cloned Dlx genes from the lamprey Petromyzon marinus, an agnathan vertebrate that occupies a critical phylogenetic position between cephalochordates and gnathostomes. We have identified four Dlx genes in P. marinus, whose orthology with gnathostome Dlx genes provides a model for how this gene family evolved in the vertebrate lineage. Differential expression of these lamprey Dlx genes in the forebrain, cranial neural crest, pharyngeal arches, and sensory placodes of lamprey embryos provides insight into the developmental evolution of these structures as well as a model of regulatory evolution after Dlx gene duplication events.

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En esta comunicación se presentan los estudios previos y las intervenciones realizadas en la iglesia de San Sebastián de Orihuela, Alicante (España) con el fin de subsanar los problemas estructurales que presentaba, con múltiples grietas en arcos y bóvedas y eliminar la humedad presente en sus fábricas, además de las sales aportadas por el agua. En el estudio histórico y arquitectónico se ha comprobado que la iglesia se construyó sobre una ermita gótica y se finalizó en 1743 pero ha sufrido numerosas intervenciones. Es una iglesia de nave única con capillas laterales cubierta mediante bóvedas. Su fachada y las pilastras interiores son de piedra vista. Para el diagnóstico se han empleado diversas técnicas (ultrasonidos, higrómetro…) que han permitido deducir las causas de las lesiones. Las intervenciones se han dirigido a reforzar la estructura mediante cosidos e inyecciones, así como a ventilar la base mediante un forjado sanitario. También se ha saneado la piedra vista, tanto en interior como en fachada y se han sacado a la luz los arcos de piedra ocultos bajo un estucado. También se han restaurado los restos arqueológicos de época gótica.

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Jerónimo Quijano fue uno de los ilustres arquitectos destacados del Renacimiento pleno en España. Su obra, la iglesia de Santiago en Orihuela -Alicante- posee una Capilla Mayor renacentista, de carácter funerario, de planta central y adosada a una nave gótica. Destaca su bóveda superior de 4 pares de arcos entrecruzados y revirados. Al ser dobles se reduce la superficie central de plementería y se gana en resistencia. Es de complicada geometría esférica y cuadrada a la vez: bóveda pseudo-vaída (esférica solo hasta los arcos exteriores) y plementería lateral adaptándose a la planta cuadrada. Supone la fusión de la antigüedad clásica con la tradición hispanomusulmana. Como referencia, se estudia sucintamente la Capilla Benavides en Baeza - Jaén-, obra de Andrés de Vandelvira e incluida en el tratado de arquitectura de su hijo Alonso, la cual plantea un gran espacio cuadrado cubierto por una bóveda vaída y reforzada por 4 arcos entrecruzados.

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According to the importance of rehabilitation and recovery of Architectural Heritage in the live of people, this paper is aimed to strengthen the traditional methods of stone vaults calculation taking advantage of the technological characteristics of the powerful program ANSYS Workbench. As an example of this, it could find out the possible pathologies that could arise during the construction history of the building. To limit this research, the upper vault of the main chapel of the Santiago parish church in Orihuela -Alicante- is selected as a reference which is a Jeronimo Quijano´s important building work in the XVI century in the Renaissance. Moreover, it is an innovative stone masonry vault that consists of 8 double intercrossed arches with each other and braced by severies. During the seventeenth century there was a lantern in the central cap and it is unknown why it was removed. Its construction could justify the original constructive solution with intercrossed arches that freed the center to create a more enlightened and comfortable presbytery. By similarity with other Quijano’s works, it is considered a small lantern drilling the central spherical cap. It is proposed to carry out a comparative study of it with different architectural solutions from the same period and based on several common parameters such as: a vault of square plant with spherical surround, intercrossed arches, a possible lantern, the dimension of the permitted space, similar states of loads and compact limestone masonry. The three solutions are mainly differentiated by their size and the type of lantern and its comparison lets us know which one is the most resistant and stable. The other two building works maintain some connection with the Quijano's professional scope. It has selected the particular case of the Communion chapel of the Basilica in Elche (a large prismatic lantern with a large cylindrical drum that starts from the own arches and an upper hemispherical dome), for its conservation, its proximity to Orihuela and its implementation during the century XVIII. Finally, a significant Dome Spanish Renaissance complete the selection: a cross vault of the Benavides Chapel of the Saint Francisco Convent in Baeza - Jaén-, designed by Andres of Vandelvira in the sixteenth century (a large hemispherical dome that starts from the own arcs). To simplify the calculation and standardize the work that have to be contrasted, all of them were considered with some similar characteristics: 30 cm constant thickness, the intercrossed arches were specifically analyzed and had identical loads, Young's modulus and Poisson's ratio. Regarding the calculation solutions, in general terms, the compressive stresses predominate, influencing on it the joint collaboration of the filling material on the vault, the vault itself, the thick side walls, the buttresses and the top cover weight . In addition, the three solutions are suitable, being the Orihuela one the safest and the Baeza one the riskiest for its large dimensions. Thus, the idea of intercrossed arches with suitable thickness would allow carry out the heaviest lantern and this would confirm it as a Renaissance architectural typology built in stone.

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This layer is a georeferenced raster image of the historic paper map entitled: Pianta delle vestigia di Roma, secondo le osservazioni di Antonio de Romanis, ach. e socio dell' accad. di archeol. e di Antonio Nibby profess. di archeologia nell Vniv. di Roma e Socio della Stessa Accademia dallo stesso corretta ed amliata seconodo le vltime scoperte. data in lvce da Venanzio Monaldini Libraio L Anno MDCCCXXVI; Gio Acquaroni dis. e inc. It was published by presso Veanzio Monaldini ... con approvazione e privilegio Pontificio in 1826. Scale [ca. 1:8,769]. Covers area including portion of the modern city of Rome and Vatican City. The image inside the map neatline is georeferenced to the surface of the earth and fit to the "European Datum 1950 UTM Zone 33N" coordinate system. All map collar and inset information is also available as part of the raster image, including any inset maps, profiles, statistical tables, directories, text, illustrations, index maps, legends, or other information associated with the principal map. This map shows features of Ancient Rome such as roads, drainage, selected buildings, city walls, gates, and fortifications, arches, and sepulchres. Relief is shown by hachures. Includes index, notes, and insets showing floor plans of selected historical sites.This layer is part of a selection of digitally scanned and georeferenced historic maps from The Harvard Map Collection as part of the Imaging the Urban Environment project. Maps selected for this project represent major urban areas and cities of the world, at various time periods. These maps typically portray both natural and manmade features at a large scale. The selection represents a range of regions, originators, ground condition dates, scales, and purposes.

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Trabalho Final do Curso de Mestrado Integrado em Medicina, Faculdade de Medicina, Universidade de Lisboa, 2014

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Cornerstone laid May 26, 1888; dedicated June 1891. Gift of Helen H. Newberry of Detroit as headquarters of Students' Christian Association. Leased by U-M as classroom in 1921; gift to U-M from SCA in 1937. Adapted as museum in 1928, named the Francis W. Kelsey Museum of Archaeology in 1953.

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Cornerstone laid May 26, 1888; dedicated June 1891. Gift of Helen H. Newberry of Detroit as headquarters of Students' Christian Association. Leased by U-M as classroom in 1921; gift to U-M from SCA in 1937. Adapted as museum in 1928, named the Francis W. Kelsey Museum of Archaeology in 1953. Person in image.

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York and Sawyer, architects. Given to the university by William W. Cook, the four buildings comprising the Law Quadrangle with their construction dates are: the Lawyers Club, 1924; the John P. Cook Dormitory, 1930; the Legal Research Building, 1931, and Hutchins Hall, 1933. The Legal Research Building includes the original library.

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Ware and Van Brunt, architect. An addition was built to the south in 1898. The 1883 portion was torn down in 1918.

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The lotus column.-- Græco-Roman architecture.-- The age of Constantine.-- Early Christian architecture.-- Santa Maria Maggiore.-- Romanesque architecture.-- The renaissance.-- Saint Peter's.

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pt. 1. American stone arches.--pt. 2. Roman stone arches.--pt. 3. English stone arches.--pt. 4. French stone arches.--pt. 5. German and Austrian stone arches.

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Portrait plate of Francine by Abraham Bosse; other plates by Tavernier after Francine's designs.