944 resultados para Retina : Patologia


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Introduzione. La movimentazione manuale di carichi è stata recentemente proposta come un possibile determinante del distacco di retina. Al fine di confortare quest’ipotesi, sono stati analizzati i tassi di incidenza di distacco di retina regmatogeno (DRR) idiopatico, trattato chirurgicamente, tra i residenti in Toscana addetti ad attività lavorative manuali, non manuali e casalinghe. Metodi. Le schede di dimissione ospedaliera (SDO) della Toscana contengono anche informazioni codificate sulla categoria generica di impiego. Sono stati utilizzati i dati di tutti i pazienti residenti in Toscana con una SDO emessa da un qualsiasi ospedale italiano nel periodo 1997-2009, con diagnosi principale di DRR (ICD-9: 361,0-361,07 e 361,9) e con DRG 36 (“interventi sulla retina”). Dopo l’eliminazione dei soggetti che non soddisfacevano i criteri di eligibilità, è stato deciso di restringere la popolazione in studio ai soggetti di età 25-59 anni, successivamente classificati in addetti ad attività lavorative manuali, non manuali o casalinghe. Risultati. Sono stati identificati 1.946 casi. Tra gli uomini, gli addetti ad attività lavorative manuali hanno riportato un tasso di incidenza standardizzato per età 1,8 volte più alto rispetto agli addetti ad attività lavorative non manuali (17,4 [IC95%, 16,1–18,7] vs. 9,8 [IC95%, 8,8–10,8]). Tra le donne, i tassi di incidenza standardizzati per età erano 1,9 volte più alti negli addetti ad attività lavorative manuali (11,1 [IC95%, 9,8–12,3]) e 1,7 volte più alti nelle casalinghe (9,5 [IC95%, 8,3–10,8]) rispetto agli addetti ad attività lavorative non manuali (5,7 [IC95%, 4,8–6,6]). Conclusioni. Lo studio mette in evidenza come gli addetti ad attività lavorative manuali siano maggiormente affetti da DRR idiopatico rispetto agli addetti ad attività lavorative non manuali. Questi risultati supportano l’ipotesi che la movimentazione manuale di carichi, che difficilmente può ritrovarsi come compito di attività lavorative non manuali, possa avere un ruolo causale nella genesi della patologia.

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

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Purpose: To investigate early functional changes of local retinal defects in type II diabetic patients using the global flash multifocal electroretinogram (MOFO mfERG). Methods: Thirty-eight diabetic patients and 14 age-matched controls were recruited. Nine of the diabetics were free from diabetic retinopathy (DR), while the remainder had mild to moderate non-proliferative diabetic retinopathy. The MOFO mfERG was performed at high (98%) and low (46%) contrast levels. MfERG responses were grouped into 35 regions for comparison with DR classification at those locations. Z-scores of the regional mfERG responses were compared across different types of DR defects. Results: The mfERG waveform consisted of the direct component (DC) and the induced component (IC). Local reduction in DC and IC amplitudes were found in diabetic patients with and without DR. With increasing severity of retinopathy, there was a further deterioration in amplitude of both components. Under MOFO mfERG paradigm, amplitude was a useful screening parameter. Conclusion: The MOFO mfERG can help in detecting early functional anomalies before the appearance of visible signs, and may assist in monitoring further functional deterioration in diabetic patients.

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This project provides a foundation for the use of silk membranes in a tissue engineered therapy for the treatment of devastating retinal diseases such as age-related macular degeneration. The three-dimensional tissue model described in this thesis has great potential for use in basic research of retinal pathologies, and the potential to be implemented into clinical approaches after appropriate refinement.

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De los diferentes tipos celulares que forman la retina unos de los más importantes son las células ganglionares (RGCs, del inglés Retinal Ganglion Cells), que son las neuronas que se encargan de transmitir la información visual desde el ojo hasta los centros visuales del cerebro. En este trabajo se pretende determinar el efecto del tiempo de cultivo en la supervivencia de las RGCs,y en la extensión y número de sus neuritas. También se pretende caracterizar un subtipo de RGCs, las RGCs que expresan el fotopigmento melanopsina.

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Vision plays an important role in the living habits of animals, especially in feeding. We investigated the postnatal development of retina in root vole Microtus oeconornus. The result shows that the retina of the M. oeconornus is very primitive before postnatal day (PD) 3. The neuroblastic layer does not differentiate and makes up more than half of the retina layer. The outer plexiform layer (OPL) first comes into existence at PDS. At PD6, as the presence of the OPL becomes obvious, the outer nuclear layer (ONL) and inner nuclear layer (INL) are much clearer. At PD18, the retina is similar to an adult retina and each layer becomes distinct. The thickness and cell density of the ganglion cell layer (GCL) and ONL during different postnatal days were also examined. These results show that the thickness and density of ONL increase during ontogeny, while the thickness and density of GCL decrease. Compared with Rattus norvegicus, Apodemus agrarius , Cricetulus triton, Microtus mandarinus , Myospalax cansus , Spermophilus dauricus and Sciurotamias davidianus, the histological structure of the retina of M. oeconornus is between that of nocturnal and diurnal rodents.

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2004

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This thesis describes an investigation of retinal directional selectivity. We show intracellular (whole-cell patch) recordings in turtle retina which indicate that this computation occurs prior to the ganglion cell, and we describe a pre-ganglionic circuit model to account for this and other findings which places the non-linear spatio-temporal filter at individual, oriented amacrine cell dendrites. The key non-linearity is provided by interactions between excitatory and inhibitory synaptic inputs onto the dendrites, and their distal tips provide directionally selective excitatory outputs onto ganglion cells. Detailed simulations of putative cells support this model, given reasonable parameter constraints. The performance of the model also suggests that this computational substructure may be relevant within the dendritic trees of CNS neurons in general.

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Material necessário para o Blotter Test; Procedimentos; Alternaria sp.; Aspergillus sp.; Cercospora kikuchii; Cercospora sojina; Chaetomium sp.; Colletotrichum truncatum; Curvularia sp.; Diaporthe sp.; Fusarium sp.; Glomerella glycines; Helminthosporium sp.; Macrophomina phaseolina; Myrothecium sp.; Nematospora corylli; Penicillium sp.; Peronospora manshurica; Pestalotia sp.; Phomopsis sp.; Rhizoctonia solani; Rosellinea sp.; Septoria glycines; Trichothecium roseum.

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A importância da patologia de sementes reside no fato de que aproximadamente 90% das culturas utilizadas para a alimentação são propagadas por semente. Dentre essas, nove são consideradas de importância primordial: soja, trigo, arroz, milho, feijão, amendoim, sorgo, cevada e beterraba açucareira.Todas essas culturas podem ser afetadas por patógenos muito agressivos transmitidos através da semente. Assim, o teste de sanidade de semente pode ser considerado como "medicina preventiva", tanto nos programas de quarentena quanto no sistema de produção de semente certificada. Nesta publicação, em sua primeira parte, são abordados os principais aspectos da patologia de sementes, como os seus históricos no mundo e no Brasil, os diferentes métodos utilizados e os fatores que podem causar variação nos resultados dos testes. Em sua segunda parte, são discutidos, em detalhe, os principais patógenos causadores de doenças na cultura da soja que são transmitidos pela semente. Dentre esses, destacam-se, Phomopsis sp. e Fusarium semitectum, causadores de problemas de germinação no laboratório quando ocorrem chuvas durante as fases de maturação e colheita da semente (podridão de semente); Diaporthe phaseolorum f.sp. meridionalis (Phomopsis meridionalis) (cancro da haste); Colletotrichum truncatum (antracnose); Cercospora kikuchii (mancha púrpura); Cercospora sojina (mancha olho-de-rã); Sclerotinia sclerotiorum (podridão branca); Sclerotium rolfsii (tombamento e morte de plantas); Macrophomina phaseolina (podridão de carvão); Rhizoctonia solani (tombamento) e Aspergillus spp. (A. flavus) que, além de ser considerado fungo de armazenagem, é responsável pela podridão da semente no solo, quando a semeadura é feita em solos com baixa disponibilidade de água, sem o tratamento da semente com fungicida. Finalmente é discutida a importância do tratamento de semente de soja com fungicidas, cuja tecnologia, desde a safra 2001/02, vem sendo utilizada em mais de 93% da área semeada com soja no Brasil.

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Sonic Hedgehog (Shh) signaling is an important determinant of vertebrate retinal ganglion cell (RGC) development. In mice, there are two major RGC populations: (1) the Islet2-expressing contralateral projecting (c)RGCs, which both produce and respond to Shh; and (2) the Zic2-expressing ipsilateral projecting RGCs (iRGCs), which lack Shh expression. In contrast to cRGCs, iRGCs, which are generated in the ventrotemporal crescent (VTC) of the retina, specifically express Boc, a cell adhesion molecule that acts as a high-affinity receptor for Shh. In Boc −/− mutant mice, the ipsilateral projection is significantly decreased. Here, we demonstrate that this phenotype results, at least in part, from the misspecification of a proportion of iRGCs. In Boc−/− VTC, the number of Zic2-positive RGCs is reduced, whereas more Islet2/Shh-positive RGCs are observed, a phenotype also detected in Zic2 and Foxd1 null embryos.

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A computational model of visual processing in the vertebrate retina provides a unified explanation of a range of data previously treated by disparate models. Three results are reported here: the model proposes a functional explanation for the primary feed-forward retinal circuit found in vertebrate retinae, it shows how this retinal circuit combines nonlinear adaptation with the desirable properties of linear processing, and it accounts for the origin of parallel transient (nonlinear) and sustained (linear) visual processing streams as simple variants of the same retinal circuit. The retina, owing to its accessibility and to its fundamental role in the initial transduction of light into neural signals, is among the most extensively studied neural structures in the nervous system. Since the pioneering anatomical work by Ramón y Cajal at the turn of the last century[1], technological advances have abetted detailed descriptions of the physiological, pharmacological, and functional properties of many types of retinal cells. However, the relationship between structure and function in the retina is still poorly understood. This article outlines a computational model developed to address fundamental constraints of biological visual systems. Neurons that process nonnegative input signals-such as retinal illuminance-are subject to an inescapable tradeoff between accurate processing in the spatial and temporal domains. Accurate processing in both domains can be achieved with a model that combines nonlinear mechanisms for temporal and spatial adaptation within three layers of feed-forward processing. The resulting architecture is structurally similar to the feed-forward retinal circuit connecting photoreceptors to retinal ganglion cells through bipolar cells. This similarity suggests that the three-layer structure observed in all vertebrate retinae[2] is a required minimal anatomy for accurate spatiotemporal visual processing. This hypothesis is supported through computer simulations showing that the model's output layer accounts for many properties of retinal ganglion cells[3],[4],[5],[6]. Moreover, the model shows how the retina can extend its dynamic range through nonlinear adaptation while exhibiting seemingly linear behavior in response to a variety of spatiotemporal input stimuli. This property is the basis for the prediction that the same retinal circuit can account for both sustained (X) and transient (Y) cat ganglion cells[7] by simple morphological changes. The ability to generate distinct functional behaviors by simple changes in cell morphology suggests that different functional pathways originating in the retina may have evolved from a unified anatomy designed to cope with the constraints of low-level biological vision.