998 resultados para TRIGEMINAL MOTOR NUCLEUS
Resumo:
Dissertação de mestrado integrado em Engenharia Eletrónica Industrial e de Computadores
Resumo:
Activation of the dorsomedial nucleus of the hypothalamus (DMH) by galanin (GAL) induces behavioural hyperalgesia. Since DMH neurones do not project directly to the spinal cord, we hypothesized that the medullary dorsal reticular nucleus (DRt), a pronociceptive region projecting to the spinal dorsal horn (SDH) and/or the serotoninergic raphe-spinal pathway acting on the spinal 5-HT3 receptor (5HT3R) could relay descending nociceptive facilitation induced by GAL in the DMH. Heat-evoked paw-withdrawal latency (PWL) and activity of SDH neurones were assessed in monoarthritic (ARTH) and control (SHAM) animals after pharmacological manipulations of the DMH, DRt and spinal cord. The results showed that GAL in the DMH and glutamate in the DRt lead to behavioural hyperalgesia in both SHAM and ARTH animals, which is accompanied particularly by an increase in heat-evoked responses of wide-dynamic range neurons, a group of nociceptive SDH neurones. Facilitation of pain behaviour induced by GAL in the DMH was reversed by lidocaine in the DRt and by ondansetron, a 5HT3R antagonist, in the spinal cord. However, the hyperalgesia induced by glutamate in the DRt was not blocked by spinal ondansetron. In addition, in ARTH but not SHAM animals PWL was increased after lidocaine in the DRt and ondansetron in the spinal cord. Our data demonstrate that GAL in the DMH activates two independent descending facilitatory pathways: (i) one relays in the DRt and (ii) the other one involves 5-HT neurones acting on spinal 5HT3Rs. In experimental ARTH, the tonic pain-facilitatory action is increased in both of these descending pathways.
Resumo:
Dissertação de mestrado integrado em Engenharia Mecânica
Resumo:
Dissertação de mestrado integrado em Engenharia Mecânica
Resumo:
Tese de Doutoramento em Engenharia Mecânica.
Resumo:
OBJECTIVE: We determined the effects of losartan and PD 123319 (antagonists of the AT1 and AT2 angiotensin receptors, respectively), and [Sar¹, Ala8] ANG II (a relatively peptide antagonist of angiotensin receptors) injected into the paraventricular nucleus (PVN) on water and 3% NaCl intake, and the diuretic, natriuretic, and pressor effects induced by administration of angiotensin II (ANG II) into the medial septal area (MSA) of conscious rats. METHODS: Holtzman rats were used . Animals were anesthetized with tribromoethanol (20 mg) per 100 grams of body weight, ip. A stainless steel guide cannula was implanted into the MSA and PVN. All drugs were injected in 0.5-mul volumes for 10-15 seconds. Seven days after brain surgery, water and 3% NaCl intake, urine and sodium excretion, and arterial blood pressure were measured. RESULTS: Losartan (40 nmol) and [Sar¹, Ala8] ANG II (40 nmol) completely eliminated whereas PD 123319 (40 nmol) partially blocked the increase in water and sodium intake and the increase in arterial blood pressure induced by ANG II (10 nmol) injected into the MSA. The PVN administration of PD 123319 and [Sar¹, Ala8] ANG II blocked whereas losartan attenuated the diuresis and natriuresis induced by MSA administration of ANG II. CONCLUSION: MSA involvement with PVN on water and sodium homeostasis and arterial pressure modulation utilizing ANGII receptors is suggested.
Resumo:
The relationship between estimated and real motor competences was analyzed for several tasks. Participants were 303 children (160 boys and 143 girls), which had between 6 and 10 years of age (M=8.63, SD=1.16). None of the children presented developmental difficulties or learning disabilities, and all attended age-appropriate classes. Children were divided into three groups according to their age: group 1 (N= 102; age range: 6.48-8.01 years); group 2 (N= 101; age range: 8.02-9.22 years); and group 3 (N=100; age range: 9.24-10.93 years). Children were asked to predict their maximum distance for a locomotor, a manipulative, and a balance task, prior to performing those tasks. Children’s estimations were compared with their real performance to determine their accuracy. Children had, in general, a tendency to overestimate their performance (standing long jump: 56.11%, kicking: 63.37%, throwing: 73.60%, and Walking Backwards (WB) on a balance beam: 45.21%), and older children tended to be more accurate, except for the manipulative tasks. Furthermore, the relationship between estimation and real performance in children with different levels of motor coordination (Köperkoordinationstest für Kinder, KTK) was analyzed. The 75 children with the highest score comprised the Highest Motor Coordination (HMC) group, and the 78 children with the lowest score were placed in the Lowest Motor Coordination (LMC) group. There was a tendency for LMC and HMC children to overestimate their skills at all tasks, except for the HMC group at the WB task. Children with the HMC level tended to be more accurate when predicting their motor performance; however, differences in absolute percent error were only significant for the throwing and WB tasks. In conclusion, children display a tendency to overestimate their performance independently of their motor coordination level and task. This fact may be determinant to the development of their motor competences, since they are more likely to engage and persist in motor tasks, but it might also increase the occurrence of unintended injuries.
Resumo:
El presente trabajo contempla el estudio del comportamiento termomecánico de un motor monopropelente, cuyo funcionamiento se basa en la descomposición catalítica del combustible, produciendo la gasificación del mismo, con su consecuente generación de calor. Estos gases, al ser conducidos convenientemente a través de una tobera con el fin de generar su apropiada expansión, producirán la acción deseada. Un diseño erróneo del sistema de alimentación podría producir el acortamiento de la vida útil del catalizador, la degradación de los sellos de la válvula, vaporizaciones indeseadas del propelente, etc.El objetivo que se persigue es construir un modelo computacional que permita visualizar el comportamiento conjunto de los diversos fenómenos, la influencia de los diversos componentes y su interacción, a fin de identificar los elementos críticos, y poder así tomar acciones correctivas u operar sobre aspectos de diseño del sistema para un mejor acondicionamiento del combustible. Para la aplicación del método, se modelizarán cada uno de los fenómenos que gobiernan el comportamiento del sistema y se les codificará en lenguaje de programación, prestando especial atención al comportamiento del fluido tanto en régimen estable como durante los transitorios. Una vez validado el programa se correrán simulaciones para determinar la influencia de los parámetros básicos de diseño sobre los procesos termomecánicos mediante un análisis de sensitividad, a fin de mitigar los posibles efectos adversos. Sin embargo, durante la ejecución de proyectos de ingeniería de este tipo, una de las cuestiones de mayor importancia es el uso racional de materiales. Una adecuada utilización de los mismos tiene diversas ventajas, dentro de las cuales podemos citar como a las de mayor relevancia a: (i) mejor aprovechamiento de las capacidades de los materiales, (ii) elementos estructurales de menor tamaño, lo que genera una economía de espacio, (iii) menor costo económico y financiero del proyecto y (iv) menor impacto ambiental. En este sentido, una de las maneras más difundidas para el uso racional de materiales es, utilizar materiales con propiedades constitutivas que se adapten mejor a las características del proyecto en desarrollo. Sin embargo, cuando se está frente a la imposibilidad de cambiar de material o mejorar las propiedades existentes, es importante comenzar a utilizar otras metodologías que permitan un mejor aprovechamiento del mismo. Aquí surge naturalmente la necesidad de introducir cambios en la forma de los componentes estructurales que integran el proyecto ejecutivo. Para realizar una adecuada optimización de los componentes estructurales, es necesario previamente definir cual o cuales van a ser las características a optimizar y como van a ser medidas esas características durante el proceso de análisis. Por lo tanto, se propone aplicar el análisis de sensibilidad topológica para problemas termo-mecánicos para optimizar los componentes estructurales del motor.
Resumo:
Magdeburg, Univ., Fak. für Naturwiss., Diss., 2010
Resumo:
Magdeburg, Univ., Fak. für Humanwiss., Diss., 2013
Resumo:
Hermann Rottengruber; Wilfried Henze; Tommy Luft (Hrsg.) und 54 Mitautoren
Resumo:
Magdeburg, Univ., Fak. für Naturwiss., Diss., 2014
Resumo:
Universität Magdeburg, Univ., Dissertation, 2015
Resumo:
Here we examine major anatomical characteristics of Corydoras aff. paleatus (Jenyns, 1842) post-hatching development, in parallel with its neurobehavioral evolution. Eleutheroembryonic phase, 4.3-8.8 days post-fertilization (dpf); 4.3-6.4 mm standard length (SL) encompasses from hatching to transition to exogenous feeding. Protopterygiolarval phase (8.9-10.9 dpf; 6.5-6.7 mm SL) goes from feeding transition to the commencement of unpaired fin differentiation, which marks the start of pterygiolarval phase (11-33 dpf; 6.8-10.7 mm SL) defined by appearance of lepidotrichia in the dorsal part of the median finfold. This phase ends with the full detachment and differentiation of unpaired fins, events signaling the commencement of the juvenile period (34-60 dpf; 10.8-18.0 mm SL). Eleutheroembryonic phase focuses on hiding and differentiation of mechanosensory, chemosensory and central neural systems, crucial for supplying the larval period with efficient escape and nutrient detection-capture neurocircuits. Protopterygiolarval priorities include visual development and respiratory, digestive and hydrodynamic efficiencies. Pterygiolarval priorities change towards higher swimming efficacy, including carangiform and vertical swimming, necessary for the high social interaction typical of this species. At the end of the protopterygiolarval phase, simple resting and foraging aggregations are seen. Resting and foraging shoals grow in complexity and participant number during pterygiolarval phase, but particularly during juvenile period.