943 resultados para Basal Ganglia


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Investigations on texture evolution and through-thickness texture heterogeneity during equal channel angular pressing (ECAP) of pure magnesium at 200 degrees C, 150 degrees C and room temperature (RT) was carried out by neutron, high energy synchrotron X-ray and electron back-scatter diffraction. Irrespective of the ECAP temperature, a distinctive basal (B) and pyramidal (C-2) II type of fibers forms. The texture differs in the bottom 1 mm portion, where the B-fiber is shifted similar to 55 degrees due to negative shear attributed to friction. (C) 2015 Elsevier Inc. All rights reserved.

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Using first-principles calculations, we establish the existence of highly-stable polymorphs of hcp metals (Ti, Mg, Be, La and Y) with nanoscale structural periodicity. They arise from heterogeneous deformation of the hcp structure occurring in response to large shear stresses localized at the basal planes separated by a few nanometers. Through Landau theoretical analysis, we show that their stability derives from nonlinear coupling between strains at different length scales. Such multiscale hyperelasticity and long-period structures constitute a new mechanism of size-dependent plasticity and its enhancement in nanoscale hcp metals.

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In this work, Mode-I fracture experiments are conducted using notched compact tension specimens machined from a rolled AZ31 Mg alloy plate having near-basal texture with load applied along rolling direction (RD) and transverse direction (TD). Moderately high notched fracture toughness of J(C) similar to 46 N/mm is obtained in both RD and TD specimens. Fracture surface shows crack tunneling at specimen mid-thickness and extensive shear lips near the free surface. Dimples are observed from SEM fractographs suggesting ductile fracture. EBSD analysis shows profuse tensile twinning in the ligament ahead of the notch. It is shown that tensile twinning plays a dual role in enhancing the toughness in the notched fracture specimens with reduced triaxiality. It provides significant dissipation in the background plastic zone and imparts hardening to the material surrounding the fracture process zone via operation of several mechanisms which retards micro-void growth and coalescence. (C) 2015 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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This paper presents the results of the laboratory model tests and the numerical studies conducted on small diameter PVC pipes, buried in geocell reinforced sand beds. The aim of the study was to evaluate the suitability of the geocell reinforcement in protecting the underground utilities and buried pipelines. In addition to geocells, the efficacy of only geogrid and geocell with additional basal geogrid cases were also studied. A PVC (Poly Vinyl Chloride) pipe with external diameter 75 mm and thickness 1.4 mm was used in the experiments. The vehicle tire contact pressure was simulated by applying the pressure on the top of the bed with the help of a steel plate. Results suggest that the use of geocells with additional basal geogrid considerably reduces the deformation of the pipe as compared to other types of reinforcements. Further, the depth of placement of pipe was also varied between 1B to 2B (B is the width of loading plate) below the plate in the presence of geocell with additional basal geogrid. More than 50% reduction in the pressure and more than 40% reduction in the strain values were observed in the presence of reinforcements at different depths as compared to the unreinforced beds. Conversely, the performance of the subgrade soil was also found to be marginally influenced by the position of the pipe, even in the presence of the relatively stiff reinforcement system. Further, experimental results were validated with 3-dimensional numerical studies using FLAC(3D) (Fast Lagrangian Analysis of Continua in 3D). A good agreement in the measured pipe stain values were observed between the experimental and numerical studies. Numerical studies revealed that the geocells distribute the stresses in the lateral direction and thus reduce the pressure on the pipe. In addition, the results of the 1-g model tests were scaled up to the prototype case of the shallow buried pipeline below the pavement using the appropriate scaling laws. (C) 2015 Elsevier Ltd. All rights reserved.

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We study the canted magnetic state in Sr2IrO4 using fully relativistic density functional theory (DFT) including an on-site Hubbard U correction. A complete magnetic phase diagram with respect to the tetragonal distortion and the rotation of IrO6 octahedra is constructed, revealing the presence of two types of canted to collinear magnetic transitions: a spin-flop transition with increasing tetragonal distortion and a complete quenching of the basal weak ferromagnetic moment below a critical octahedral rotation. Moreover, we put forward a scheme to study the anisotropic magnetic couplings by mapping magnetically constrained noncollinear DFT onto a general spin Hamiltonian. This procedure allows for the simultaneous account and direct control of the lattice, spin, and orbital interactions within a fully ab initio scheme. We compute the isotropic, single site anisotropy and Dzyaloshinskii-Moriya (DM) coupling parameters, and clarify that the origin of the canted magnetic state in Sr2IrO4 arises from the structural distortions and the competition between isotropic exchange and DM interactions.

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Due to its complex honeycomb structure, the numerical modeling of the geocell has always been a big challenge. Generally, the equivalent composite approach is used to model the geocells. In the equivalent composite approach, the geocellsoil composite is treated as the soil layer with improved strength and stiffness values. Though this approach is very simple, it is unrealistic to model the geocells as the soil layer. This paper presents a more realistic approach of modeling the geocells in three-dimensional (3D) framework by considering the actual curvature of the geocell pocket. A square footing resting on geocell reinforced soft clay bed was modeled using the ``fast Lagrangian analysis of continua in 3D'' (FLAC(3D)) finite difference package. Three different material models, namely modified Cam-clay, Mohr-Coulomb, and linear elastic were used to simulate the behaviour of foundation soil, infill soil and the geocell, respectively. It was found that the geocells distribute the load laterally to the wider area below the footing as compared to the unreinforced case. More than 50% reduction in the stress was observed in the clay bed in the presence of geocells. In addition to geocells, two other cases, namely, only geogrid and geocell with additional basal geogrid cases were also simulated. The numerical model was systematically validated with the results of the physical model tests. Using the validated numerical model, parametric studies were conducted to evaluate the influence of various geocell properties on the performance of reinforced clay beds.

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The magnetic field in rapidly rotating dynamos is spatially inhomogeneous. The axial variation of the magnetic field is of particular importance because tall columnar vortices aligned with the rotation axis form at the onset of convection. The classical picture of magnetoconvection with constant or axially varying magnetic fields is that the Rayleigh number and wavenumber at onset decrease appreciably from their non-magnetic values. Nonlinear dynamo simulations show that the axial lengthscale of the self-generated azimuthal magnetic field becomes progressively smaller as we move towards a rapidly rotating regime. With a small-scale field, however, the magnetic control of convection is different from that in previous studies with a uniform or large-scale field. This study looks at the competing viscous and magnetic mode instabilities when the Ekman number E (ratio of viscous to Coriolis forces) is small. As the applied magnetic field strength (measured by the Elsasser number Lambda) increases, the critical Rayleigh number for onset of convection initially increases in a viscous branch, reaches an apex where both viscous and magnetic instabilities co-exist, and then falls in the magnetic branch. The magnetic mode of onset is notable for its dramatic suppression of convection in the bulk of the fluid layer where the field is weak. The viscous-magnetic mode transition occurs at Lambda similar to 1, which implies that small-scale convection can exist at field strengths higher than previously thought. In spherical shell dynamos with basal heating, convection near the tangent cylinder is likely to be in the magnetic mode. The wavenumber of convection is only slightly reduced by the self-generated magnetic field at Lambda similar to 1, in agreement with previous planetary dynamo models. The back reaction of the magnetic field on the flow is, however, visible in the difference in kinetic helicity between cyclonic and anticyclonic vortices.

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In spite of intense research on ZnO over the past decade, the detailed investigation about the crystallographic texture of as obtained ZnO thin films/coatings, and its deviation with growth surface is scarce. We report a systematic study about the orientation distribution of nanostructured ZnO thin films fabricated by microwave irradiation with the variation of substrates and surfactants. The nanostructured films comprising of ZnO nanorods are grown on semiconductor substrates such as Si(100), Ge(100)], conducting substrates (ITO-coated glass, Cr coated Si), and polymer coated Si (PMMA/Si) to examine the respective development of crystallographic texture. The ZnO deposited on semiconductor substrates yieldsmixed texture, whereas c-axis oriented ZnO nanostructured films are obtained by conducting substrate, and PMMA coated Si substrates. Among all the surfactants, nanostructured film produced by using the lower molecular weight of polymeric surfactants (polyvinylpyrrolidone) shows a stronger (0002) texture, and that can be tuned to (10 - 10) by increasing the molecular weight of the surfactant. The strongest basal pole is achieved for the ZnO deposited on PMMA coated Si as substrate, and cetyl-trimethyl ammonium bromide as cationic surfactant. The texture analysis is carried out by X-ray pole figure analysis using the Schultz reflection method. (C) 2015 Elsevier B.V. All rights reserved.

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Here we report a novel regulatory mechanism for autophagy-mediated degradation of Mycobacterium tuberculosis (Mtb) and specific strategy exploited by the virulent Mtb to evade it. We show while both avirulent (H37Ra) and virulent (H37Rv) mycobacteria could readily localize to autophagosomes, their maturation into autolysosomes (flux) was significantly inhibited by the latter strain. The inhibition of autophagy flux by the virulent strain was highly selective, as it did not perturb the basal autophagy flux in the macrophages. Selective inhibition of flux of Mtb-containing autophagosomes required virulence regulators PhoP and ESAT-6. We show that the maturation of Mtb-containing autophagosomes into autolysosomes required recruitment of the late endosome marker RAB7, forming the intermediate compartment amphisomes. Virulent Mtb selectively evaded their targeting to the amphisomes. Thus we report a crosstalk between autophagy and phagosome maturation pathway and highlight the adaptability of Mtb, manifested by selective regulation of autophagy flux.

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Ferroelectricity in ZnO is an unlikely physical phenomenon. Here, we show ferroelectricity in undoped 001] ZnO nanorods due to zinc vacancies. Generation of ferroelectricity in a ZnO nanorod effectively increases its piezoelectricity and turns the ZnO nanorod into an ultrahigh-piezoelectric material. Here using piezoelectric force microscopy (PFM), it is observed that increasing the frequency of the AC excitation electric field decreases the effective d(33). Subsequently, the existence of a reversible permanent electric dipole is also found from the P-E hysteresis loop of the ZnO nanorods. Under a high resolution transmission electron microscope (HRTEM), we observe a zinc blende stacking in the wurtzite stacking of a single nanorod along the growth axis. The zinc blende nature of this defect is also supported by the X-ray diffraction (XRD) and Raman spectra. The presence of zinc vacancies in this basal stacking fault modulates p-d hybridization of the ZnO nanorod and produces a magnetic moment through the adjacent oxygen ions. This in turn induces a reversible electric dipole in the non-centrosymmetric nanostructure and is responsible for the ultrahigh-piezoelectric response in these undoped ZnO nanorods. We reveal that this defect engineered ZnO can be considered to be in the competitive class of ultrahigh-piezoelectric nanomaterials for energy harvesting and electromechanical device fabrication.

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Bentonite is a preferred buffer and backfill material for deep geological disposal of high-level nuclear waste (HLW). Bentonite does not retain anions by virtue of its negatively charged basal surface. Imparting anion retention ability to bentonite is important to enable the expansive clay to retain long-lived I-129 (iodine-129; half-life = 16 million years) species that may escape from the HLW geological repository. Silver-kaolinite (AgK) material is prepared as an additive to improve the iodide retention capacity of bentonite. The AgK is prepared by heating kaolinite-silver nitrate mix at 400 degrees C to study the kaolinite influence on the transition metal ion when reacting at its dehydroxylation temperature. Thermo gravimetric-Evolved Gas Detection analysis, X-ray diffraction analysis, X-ray photo electron spectroscopy and electron probe micro analysis indicated that silver occurs as AgO/Ag2O surface coating on thermally reacting kaolinite with silver nitrate at 400 degrees C.

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Las etapas de este trabajo de investigación se llevaron a cabo en las instalaciones del invernadero y vivero de la Universidad Nacional Agraria, ubicada a la altura del kilómetro 12 carretera norte en la ciudad de Managua. Se realizó un ensayo de germinación con semillas falso roble Tabebuia rosea (Bertol.) DC., genízaro Phitecellobium saman (Jacq.) Benth. y guanacaste negro Enterolobium cyclocarpum (Jacq.) Griseb., para cuantificar el porcentaje, energía y valor de la germinación aplicando tratamientos pre germinativos. Posteriormente, en vivero, se establecieron dichas especies en un diseño de bloques completos al azar con tres bloques por especie, tres tratamientos por bloque y noventa repeticiones por tratamiento, realizando un ANDEVA y aplicando una prueba de separación de medias. Las variables evaluadas en el ANDEVA fueron altura total y diámetro basal. Separadamente se evaluó la mortalidad y sobrevivencia de las plantas en el vivero. El tratamiento pre germinativo que dio mejores resultados fue el rompimiento de la testa en el extremo donde se encuentra el micrópilo, con porcentajes de germinación superiores al 90%. No se encontraron diferencias significativas entre tratamientos, por lo cual no hubo efecto de los sustratos sobre los incrementos de las plantas de genízaro Phitecellobium saman (Jacq.) Benth. y se encontraron diferencias significativas entre tratamientos y variables para guanancaste negro Enterolobium cyclocarpum (Jacq.) Griseb. con los mayores incrementos en compostaje con 29,32 cm y los menores en tierra común 18,82 cm. El compostaje fue el sustrato donde ocurrió la mayor sobrevivencia de guanacaste negro Phitecellobium saman (Jacq.) Benth. con 85% y genízaro Phitecellobium saman (Jacq.) Benth. con 66%. Los valores de mortalidad fueron menores al 26% en todos los sustratos.

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El estudio se llevó a cabo en la comarca L a Chipopa del departamento de Granada. El objetivo es analizar la estructura, composición florística y regeneración natural, así como la tasa de mortalidad y reclutamiento de los individuos e n la vegetación fragmentada de un bosque seco tropical que permita tomar decisi ones y emitir recomendaciones para el manejo. Para tal efecto, se realizaron dos mediciones del diámetro de las espec ies arbóreas mayores de cinco centímetros en tres parcelas permanentes de 0.25 hectárea entre el periodo 2006 y 2009. S e identificaron 4 3 especies representadas en 26 familias botánicas , siendo las más representativas Fabáceae, Euphorbeaceae, Hipocrataceae , Mimosaceae, Rubeaceae . El incremento periódico anual promedio fue de 0.58 cm año - 1 , una tasa de mortalidad del 7% donde el 77% es provocada por el hombre y 3% de reclutamiento. El área basal se incrementó en 2 m 2 ha - 1 , la perdida por mortalidad de 1.12 m 2 ha - 1, ganancia por sobrevivencia de 2.5 m 2 ha - 1 y por reclutamiento 0.38 m 2 ha - 1 en 3 años. El 93 % de las especies tienen uso para leña, 5% forrajeras y las m aderables 2%. L a regeneración natural es abundante , con una alta riqueza específica de es pecies , apropiado para el reemplazo de los individuos muertos o aprovechados, pero no se registraron las especies de alto valor comercial . C onforme el tiempo el bosque de Nandarola alcanza una estructura con árboles de todos los tamaños y una mayor compo sición de especies, siendo muy diversificado y dinámico ; sin embargo, se recomienda aplicar tratamientos de raleo y liberación de lianas para favorecer el incremento de las especies, así como, enriquecimiento con especies maderables .

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El dióxido de carbono es el más importante de los Gases de Efecto Invernadero, por la actividad humana, tanto en términos de su cantidad como de su potencial efecto sobre el calentamiento global. Este es producido cuando se usa combustible fósil para generar energía y cuando los bosques son deforestados y quemados. La vegetación arbórea es una fuente y a la vez un sumidero natural de CO2. El presente estudio se realizó en el municipio de Nandaime departamento de Granada 20 10, con el objetivo de evaluar el carbono almacenado en los componentes biomasa aérea, hojarasca y suelo en tres sucesiones de edad (9, 15 y 19 años), en bosque seco tropical. Se hizo un inventario forestal (fustal 200 m2 y latizal 25 m2). Se cortó el árbol promedio en fustales Se pesó y muestreo la biomasa aérea y hojarasca, en las cuales se determinó en laboratorio el porcentaje de humedad y contenido de carbono. La mayor cantidad de árboles fue en la edad de 9 años con 2,366.7 árboles/ha. Los promedios de diámetro en fustal fueron 10.92, 14.7 y 15.97 cm, para 9, 15 y 19 años respectivamente. Los promedios de diámetro en latizal fueron 6.29, 6.41 y 6.43 cm, para 9 15 y 19 años respectivamente. Los promedios de altura en fustal fueron 6.92, 10.21 y 10.78 m, para 9 15 y19 años respectivamente. Los promedios de altura en latizal fueron 5.25, 6.00 y 8.13 m, para 9 15 y19 años respectivamente. La mayor cantidad de área basal y volumen fue en la edad de 9 años con 38.66 m 2/a y 356.83 m3/ha. Según el índice de diversidad Shannon-Wiener y Simpson se determinó que el sitio más diverso en fustal fue la sucesión de 15 años de edad y el menos diverso el nivel de 19 años, en latizal el más diverso fue el de 15 años y el menos diverso el de 19. En la edad 19 años , se cuantifico la mayor cantidad de hojarasca con 5.69 t/ha, pero el mayor contenido de carbono fue en 9 años con 1.11 t/ha. En la edad 9 años, se cuantifico la mayor cantidad de biomasa y carbono en ramas y hojas con 206.82 y 37.49t/ha, respectivamente. Para fuste, se cuantifico la mayor cantidad de biomasa y carbono en la edad de 9 años con 149.98 y 47.63 t/ha, respectivamente. El carbono almacenado en el suelo fueron 22.5, 27.68 y 42.39 t/ha, para 9, 15 y19 años respectivamente. La tasa de fijación de la biomasa aérea fue 9.46, 7.11 y 6.23 t/año, para 9, 15 y 19 años respectivamente.

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La planificación y manejo integral de fincas es un mod elo con tendencias productivas, en Nicaragua la ausencia de metodologías sencillas, flexibles, con alta factibilidad económica y confiabilidad de los resultados, es un factor determinante de la aceptación e implementación de los planes de manejo a nivel de finca. El presente estudio se realizó con la finalidad de contribuir información de metodología para inventarios forestales y resultados florísticos en el almacenamiento de carbono, en tres fincas productivas del bosque húmedo tropical del municipio El Castillo, Río San Juan. El estudio se estableció en tres etapas metodológicas: planificación de trabajo, fase de campo y almacenamiento de datos (procesamiento). Para cumplir los objetivos se implementó un inventario forestal por muestreo sistemático con diferentes intensidades de muestreo en cada finca, se establecieron parcelas de 10m x 50m (0.05 ha), para comparar la diversidad entre fincas se utilizó igual tamaño de parcelas (0.3 ha), mediante el índice de Margalef (riqueza) e índice de Shannon-Weiner (equidad), se analizó la estructura horizontal mediante el cálculo de abundancia, área basal y volumen por hectárea, para la estimación de carbono se optó por el método no destructivo utilizando la ecuación general de biomasa (Brown, 1997) y el factor de carbono según IPCC, 2005. Las variables estudiadas son: nombre botánico de la especie arbórea, DAP (1.30m sobre el suelo ) mayor a 10 cm y altura fustal. Se identificaron 31 familias botánicos, 57 géneros y 68 especies, las familias más representativas, según el número de especie son, Moraceae, Rubiaceae, Fabaceae, Sapotaceae, Anonaceae, Burseraceae, Cumbretaceae, Lauraceae, Meliaceae, Vochysiaceae, Mimosaceae, alta presencia de especies indicadoras de bosques alterados o secundarios y bajo número de especies comerciales. No obstante el estudio de muestra alta riqueza en las tres fincas sin diferencias significativas (X²= 0,916; P>0,05) y baja equidad en La Pavona y La Perilla, por el contrario La Primavera presenta mejor representatividad de las especies. El bosque con mayor área basal y volumen (desarrollo estructural), fue La Pavona (26.51 m2ha-1 y 365.39 m3 ha-1), también almacenó mayor carbono por hectárea (195.66Mg C ha-1), básicamente los resultado de carbono son similares entre las tres fincas (La Perilla con 184.38 MgC ha-1 y La Primavera con 192.21 MgC ha-1), también se encontró alta relación entre el estado de desarrollo (clases naturales de edades), abundancia, volumen y el almacenamiento de carbono por la alta cantidad de biomasa.