16 resultados para Macular thickness

em Consorci de Serveis Universitaris de Catalunya (CSUC), Spain


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Objectiu:Avaluar l’eficàcia i seguretat de pegaptanib de sodi en el tractament de l’edema macular secundari a obstrucció venosa de la retina (OVR). Mètode: Estudi prospectiu de 16 pacients amb edema macular secundari a OVR tractats mitjançant injeccions intravítrees de pegaptanib de sodi 1mg (0’05ml) a demanda amb un període de seguiment mínim de 6 mesos. Resultat: Millora significativa de l’agudesa visual i del perfil foveal en els nostres pacients. No alarmes de seguretat noves. Conclusions: Pegaptanib de sodi sembla proporcionar beneficis anatòmics i funcionals en el tractament de l’edema macular secundari a trombosis venosa de la retina.

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Estudio retrospectivo de los factores demográficos y los resultados quirúrgicos obtenidos en todos los casos de agujero macular intervenidos entre Enero 2005 y Junio 2009 en nuestro centro. Estudio transversal del estado del IS/OS y su correlación con la agudeza visual en pacientes con agujero macular idiopático cerrado quirúrgicamente.

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En el present treball es vol avaluar la relació que existeix entre l’edema macular diabètic, les troballes per tomografia de coherència òptica i diferents paràmetres de laboratori e insulino resistència en una sèrie de pacients amb diabetis mellitus tipus 2 no insulino dependents del nostre medi. Es realitza un estudi analític transversal observacional en pacients visitats en el centre d’Atenció Primària d’Horta i en el Servei d’Oftalmologia de l’Hospital Universitari Vall d’Hebrón visitats des de Febrer de l’any 2010 fins a Març de l’any 2011.

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INTRODUCCIÓ L’angiogènesi és el procés que condueix a la formació de nous vasos sanguinis a partir de la vascularització preexistent. Disposem en l’actualitat de diversos fàrmacs que inhibeixen un factor proangiogènic, el factor de creixement de l’endoteli vascular (VEGF). L’objectiu del nostre estudi és determinar l’efectivitat de la mol·lècula bevacizumab (Avastin ®) en el tractament de diverses patologies amb neovascularització i/o edema macular. MATERIAL I MÈTODES Estudi prospectiu obert no randomitzat. Àmbit d’estudi: pacients del Servei d’Oftalmologia de l’Hospital Municipal de Badalona. Població a estudi: pacients amb Oclusió venosa de l’artèria central de la retina i oclusió de branca venosa / Edema macular diabètic / Edema macular uveític / Retinopatia diabètica proliferativa / Glaucoma neovascular / Metàstasi a iris de tumor oat cell de pulmó Metodologia: comparació de l’espessor macular central o de la neovascularització, abans i després del tractament RESULTATS En tots els subgrups a estudi s’observa millora del paràmetre estudiat globalment. Pacients amb edema macular diabètic: milloren agudesa visual 0’22 de mitjana, 169 micres de disminució promig de l’edema. Pacients amb edema macular secundari a oclusió venosa: milloren agudesa visual 0’23 de mitjana, 143 micres de disminució promig de l’edema. Pacients amb edema macular uveític: milloren agudesa visual 0’22 de mitjana, amb una disminució promig de l’edema macular de 263 micres. Pacients amb retinopatia diabètica, glaucoma neovascular o metàstasi iridiana: regressió parcial/completa de la neovascularització. CONCLUSIONS El nostre estudi suggereix que el bevacizumab intravitri és una teràpia eficaç i segura en casos d’edema macular o neovascularització de diversa etiologia diferent de DMAE, encara que d’efecte temporal. Cal tenir en compte els riscos locals i sistèmics, així com el seu ús compassiu. Serien necessaris estudis prospectius aleatoris més extensos i amb major temps de seguiment per reforçar els resultats favorables actuals d’aquest tractament.

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Objectiu: comparar la eficàcia entre Ranibizumab y Bevacizumab en el tractament de la DMAE de tipus exudatiu. Material i mètode Es tracta d’un estudi retrospectiu en el que es comparen a curt termini dos fàrmacs antiangiogènics utilitzats en el tractament de DMAE exudativa per via intravitrea: el Ranibizumab iel Bevacizumab. Hem seleccionat pacients amb DMAE exudativa tractats amb teràpia antiangiogènica i s’han distribuït en dos grups segons el tractament realitzat. Els pacients van ser tractats en el període comprés entre Gener del 2007 i Novembre del 2007, deprés d’uns mesos de l’aprovació del Ranibizumab intravitri per tractament de DMAE per la FDA. Resultats: La diferència entre l’AV mitja abans i després del tractament no era estadísticament significativa en cap dels dos grups tractats, mentre que la diferència entre el gruix macular antes i després del tractament en ambdós grups ha millorat de manera estadísticament significativa. Comparem a continuació el grau de millora per OCT en ambdós grups. Procedim a l’aplicació del test de Mann-Whitney per comparar si existeix diferència en la disminució del gruix de la màcula entre els dos grups. Evidenciem que la diferència no era clínicament significativa (p = 0.705) Conclusió: Els resultats obtinguts en el nostre estudi no mostren diferència entre els dos fàrmacs en el tractament de la DMAE exudativa a curt termini però reforcen la necessitat de futurs estudis prospectius i randomitzats

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This work is focused on the study of the fine speckle contrast present in planar view observations of matched and mismatched InGaAs layers grown by molecular beam epitaxy on InP substrates. Our results provide experimental evidence of the evolution of this fine structure with the mismatch, layer thickness, and growth temperature. The correlation of the influence of all these parameters on the appearance of the contrast modulation points to the development of the fine structure during the growth. Moreover, as growth proceeds, this structure shows a dynamic behavior which depends on the intrinsic layer substrate stress.

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We study whether the neutron skin thickness Δrnp of 208Pb originates from the bulk or from the surface of the nucleon density distributions, according to the mean-field models of nuclear structure, and find that it depends on the stiffness of the nuclear symmetry energy. The bulk contribution to Δrnp arises from an extended sharp radius of neutrons, whereas the surface contribution arises from different widths of the neutron and proton surfaces. Nuclear models where the symmetry energy is stiff, as typical of relativistic models, predict a bulk contribution in Δrnp of 208Pb about twice as large as the surface contribution. In contrast, models with a soft symmetry energy like common nonrelativistic models predict that Δrnp of 208Pb is divided similarly into bulk and surface parts. Indeed, if the symmetry energy is supersoft, the surface contribution becomes dominant. We note that the linear correlation of Δrnp of 208Pb with the density derivative of the nuclear symmetry energy arises from the bulk part of Δrnp. We also note that most models predict a mixed-type (between halo and skin) neutron distribution for 208Pb. Although the halo-type limit is actually found in the models with a supersoft symmetry energy, the skin-type limit is not supported by any mean-field model. Finally, we compute parity-violating electron scattering in the conditions of the 208Pb parity radius experiment (PREX) and obtain a pocket formula for the parity-violating asymmetry in terms of the parameters that characterize the shape of the 208Pb nucleon densities.

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A computer-aided method to improve the thickness uniformity attainable when coating multiple substrates inside a thermal evaporation physical vapor deposition unit is presented. The study is developed for the classical spherical (dome-shaped) calotte and also for a plane sector reversible holder setup. This second arrangement is very useful for coating both sides of the substrate, such as antireflection multilayers on lenses. The design of static correcting shutters for both kinds of configurations is also discussed. Some results of using the method are presented as an illustration.

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In this article we report our systematic studies of the dependence on the sample thickness of the onset parameters of the instability of the nematic-isotropic interface during directional growth and melting, in homeotropic or planar anchoring.

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Purpose: Atheromatic plaque progression is affected, among others phenomena, by biomechanical, biochemical, and physiological factors. In this paper, the authors introduce a novel framework able to provide both morphological (vessel radius, plaque thickness, and type) and biomechanical (wall shear stress and Von Mises stress) indices of coronary arteries. Methods: First, the approach reconstructs the three-dimensional morphology of the vessel from intravascular ultrasound(IVUS) and Angiographic sequences, requiring minimal user interaction. Then, a computational pipeline allows to automatically assess fluid-dynamic and mechanical indices. Ten coronary arteries are analyzed illustrating the capabilities of the tool and confirming previous technical and clinical observations. Results: The relations between the arterial indices obtained by IVUS measurement and simulations have been quantitatively analyzed along the whole surface of the artery, extending the analysis of the coronary arteries shown in previous state of the art studies. Additionally, for the first time in the literature, the framework allows the computation of the membrane stresses using a simplified mechanical model of the arterial wall. Conclusions: Circumferentially (within a given frame), statistical analysis shows an inverse relation between the wall shear stress and the plaque thickness. At the global level (comparing a frame within the entire vessel), it is observed that heavy plaque accumulations are in general calcified and are located in the areas of the vessel having high wall shear stress. Finally, in their experiments the inverse proportionality between fluid and structural stresses is observed.

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We analyze the neutron skin thickness in finite nuclei with the droplet model and effective nuclear interactions. The ratio of the bulk symmetry energy J to the so-called surface stiffness coefficient Q has in the droplet model a prominent role in driving the size of neutron skins. We present a correlation between the density derivative of the nuclear symmetry energy at saturation and the J/Q ratio. We emphasize the role of the surface widths of the neutron and proton density profiles in the calculation of the neutron skin thickness when one uses realistic mean-field effective interactions. Next, taking as experimental baseline the neutron skin sizes measured in 26 antiprotonic atoms along the mass table, we explore constraints arising from neutron skins on the value of the J/Q ratio. The results favor a relatively soft symmetry energy at subsaturation densities. Our predictions are compared with the recent constraints derived from other experimental observables. Though the various extractions predict different ranges of values, one finds a narrow window L∼45-75 MeV for the coefficient L that characterizes the density derivative of the symmetry energy that is compatible with all the different empirical indications.

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Purpose: Atheromatic plaque progression is affected, among others phenomena, by biomechanical, biochemical, and physiological factors. In this paper, the authors introduce a novel framework able to provide both morphological (vessel radius, plaque thickness, and type) and biomechanical (wall shear stress and Von Mises stress) indices of coronary arteries. Methods: First, the approach reconstructs the three-dimensional morphology of the vessel from intravascular ultrasound(IVUS) and Angiographic sequences, requiring minimal user interaction. Then, a computational pipeline allows to automatically assess fluid-dynamic and mechanical indices. Ten coronary arteries are analyzed illustrating the capabilities of the tool and confirming previous technical and clinical observations. Results: The relations between the arterial indices obtained by IVUS measurement and simulations have been quantitatively analyzed along the whole surface of the artery, extending the analysis of the coronary arteries shown in previous state of the art studies. Additionally, for the first time in the literature, the framework allows the computation of the membrane stresses using a simplified mechanical model of the arterial wall. Conclusions: Circumferentially (within a given frame), statistical analysis shows an inverse relation between the wall shear stress and the plaque thickness. At the global level (comparing a frame within the entire vessel), it is observed that heavy plaque accumulations are in general calcified and are located in the areas of the vessel having high wall shear stress. Finally, in their experiments the inverse proportionality between fluid and structural stresses is observed.

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We describe a relation between the symmetry energy coefficients csym(ρ) of nuclear matter and asym(A) of finite nuclei that accommodates other correlations of nuclear properties with the low-density behavior of csym(ρ). Here, we take advantage of this relation to explore the prospects for constraining csym(ρ) of systematic measurements of neutron skin sizes across the mass table, using as example present data from antiprotonic atoms. The found constraints from neutron skins are in harmony with the recent determinations from reactions and giant resonances.

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An analytical theory to describe the combined effects of the epitaxial layer thickness and the ohmic contact on the noise properties of Schottky barrier diodes is presented. The theory, which provides information on both the local and the global noise properties, takes into account the finite size of the epitaxial layer and the effects of the back ohmic contact, and applies to the whole range of applied bias. It is shown that by scaling down the epitaxial layer thickness, the current regime in which the noise temperature displays a shot-noise-like behavior increases at the cost of reducing the current range in which the thermal-noise-like behavior dominates. This improvement in noise temperature is limited by the effects of the ohmic contact, which appear for large currents. The theory is formulated on general trends, allowing its application to the noise analysis of other semiconductor devices operating under strongly inhomogeneous distributions of the electric field and charge concentrations.