884 resultados para CAVE, Virtual Reality Environment, 3D, Stereoscopic simulator


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En el siglo XXI, las bibliotecas buscaron formas para revitalizarse en su misión de transmitir el conocimiento, respondiendo a los cambiaos que afectan el ambiente universitario en el mundo entero. En Europa, el establecimiento del 'Ambiente Europeo de Enseñanza Superior', por la Declaración de Bologna (1999), tuvo como consecuencia la proposición de un nuevo modelo de unidad de información: Centros de Recursos para el Aprendizaje e Investigación (CRAI). El modelo se basa en la interacción entre docentes y alumnos con los recursos de información, creando un ambiente virtual de aprendizaje. La propuesta del CRAI puede representar una alternativa viable para el desarrollo de las bibliotecas universitarias brasileñas. En este sentido, se proponen algunas reflexiones basadas en la contraposición de este modelo a la realidad de las universidades brasileñas.

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Investigating the use of Virtual Learning Environments by teachers in schools and colleges

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Propuesta de creación de un espacio reactivo potencial con la particularidad de la estructuración, preparación y desarrollo artístico. Se trata de una instalación con estructura regular en la que se ocultan las obras en ausencia de público con la intención de preservar la exhibición. Estructura virtual que oculta la obra de arte expuestas en ausencia de observador. Mecanismos prácticos de creación de entornos tridimensionales y escenarios. Programación en lenguaje visual basic para accionadores automáticos aleatorios. Sistemas de navegación virtual Quicktime vr.vrml y diseño del espacio de representación artístico interactivo. Objetos, situación y configuraciones. Iluminación. Renderizados. Software informático 3D y tecnología VRML (Virtual Reality Modeling Languaje). Proceso investigador directamente ligado a la creación artística y las nuevas tecnologías. metodología cualitativa experimental de representación educativa sobre los sujetos que contemplan los programas. La percepción del arte es variable en el espacio y el tiempo siendo ello una condición que no fija la obra en una ubicación única y perdurable sino que varía en relación con la disposición consciente e inconsciente del sujeto en su entorno. Tratándose de un sistema de representación artístico inédito podrá servir de puerta a nuevas líneas de investigación en el arte activo, multiusuario, reactivo e integral.

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Monográfico con el título: 'Metodologías de Aprendizaje Colaborativo'. Resumen basado en la publicación

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This article discusses the lessons learned from developing and delivering the Vocational Management Training for the European Tourism Industry (VocMat) online training programme, which was aimed at providing flexible, online distance learning for the European tourism industry. The programme was designed to address managers ‘need for flexible, senior management level training which they could access at a time and place which fitted in with their working and non-work commitments. The authors present two main approaches to using the Virtual Learning Environment, the feedback from the participants, and the implications of online Technology in extending tourism training opportunities

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La enseñanza y evaluación automática a través de un sistema Computer Based Assessment (CBA) requiere de software especializado que se adapte a la tipología de actividades a tratar y evaluar. En esta tesis se ha desarrollado un entorno CBA que facilita el aprendizaje y evaluación de los principales temas de una asignatura de bases de datos. Para ello se han analizado las herramientas existentes en cada uno de estos temas (Diagramas Entidad/Relación, diagramas de clases, esquemas de bases de datos relacionales, normalización, consultas en álgebra relacional y lenguaje SQL) y para cada uno de ellos se ha analizado, diseñado e implementado un módulo de corrección y evaluación automática que aporta mejoras respecto a los existentes. Estos módulos se han integrado en un mismo entorno al que hemos llamado ACME-DB.

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Esta dissertação surgiu com o intuito de criar uma prova neuropsicológica com todas as características das tradicionais provas de papel e lápis, com o acréscimo de vantagens que as novas tecnologias lhe podem trazer. Desta forma, desenvolveu-se um ambiente virtual com um propósito avaliativo, semelhante ao da prova em papel Trail Making Test e posteriormente ao seu desenvolvimento elaborou-se uma aplicação que foi testada em dois grupos. Compostas por um total de 47 elementos, estas amostras abrangeram população com e sem diagnóstico de problemas de alcoolismo (Síndrome de Dependência Alcoólica), que foram submetidas à execução das provas Cozinha Virtual e Trail Making Test. Os dados daí resultantes comprovam a capacidade desta prova avaliar os défices cognitivos ao nível da flexibilidade cognitiva, da capacidade de sequenciação, de procura visual, velocidade motora e capacidades atencionais e confirmam também a sua correlação com a prova que lhe deu origem.

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Physical rehabilitation of brain injuries and strokes is a time consuming and costly process. Over the past decade several studies have emerged looking at the use of highly sophisticated technologies, such as robotics and virtual reality to tap into the needs of clinicians and patients. While such technologies can be a valuable tool to facilitate intensive movement practice in a motivating and engaging environment, success of therapy also depends on self-administered therapy beyond hospital stay. With the emergence of low-cost gaming consoles such as the Nintendo Wii, new opportunities arise for home-therapy paradigms centred on social interactions and values, which could reduce the sense of isolation and other depression related complications. In this paper we examine the potential, user acceptance and usability of an unmodified Nintendo Wii gaming console as a low-cost treatment alternative to complement current rehabilitation programmes.

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Virtual learning environments (VLEs) would appear to be particular effective in computer-supported collaborative work (CSCW) for active learning. Most research studies looking at computer-supported collaborative design have focused on either synchronous or asynchronous modes of communication, but near-synchronous working has received relatively little attention. Yet it could be argued that near-synchronous communication encourages creative, rhetorical and critical exchanges of ideas, building on each other’s contributions. Furthermore, although many researchers have carried out studies on collaborative design protocol, argumentation and constructive interaction, little is known about the interaction between drawing and dialogue in near-synchronous collaborative design. The paper reports the first stage of an investigation into the requirements for the design and development of interactive systems to support the learning of collaborative design activities. The aim of the study is to understand the collaborative design processes while sketching in a shared white board and audio conferencing media. Empirical data on design processes have been obtained from observation of seven sessions with groups of design students solving an interior space-planning problem of a lounge-diner in a virtual learning environment, Lyceum, an in-house software developed by the Open University to support its students in collaborative learning.

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An increasing number of neuroscience experiments are using virtual reality to provide a more immersive and less artificial experimental environment. This is particularly useful to navigation and three-dimensional scene perception experiments. Such experiments require accurate real-time tracking of the observer's head in order to render the virtual scene. Here, we present data on the accuracy of a commonly used six degrees of freedom tracker (Intersense IS900) when it is moved in ways typical of virtual reality applications. We compared the reported location of the tracker with its location computed by an optical tracking method. When the tracker was stationary, the root mean square error in spatial accuracy was 0.64 mm. However, we found that errors increased over ten-fold (up to 17 mm) when the tracker moved at speeds common in virtual reality applications. We demonstrate that the errors we report here are predominantly due to inaccuracies of the IS900 system rather than the optical tracking against which it was compared. (c) 2006 Elsevier B.V. All rights reserved.

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The interface between humans and technology is a rapidly changing field. In particular as technological methods have improved dramatically so interaction has become possible that could only be speculated about even a decade earlier. This interaction can though take on a wide range of forms. Indeed standard buttons and dials with televisual feedback are perhaps a common example. But now virtual reality systems, wearable computers and most of all, implant technology are throwing up a completely new concept, namely a symbiosis of human and machine. No longer is it sensible simply to consider how a human interacts with a machine, but rather how the human-machine symbiotic combination interacts with the outside world. In this paper we take a look at some of the recent approaches, putting implant technology in context. We also consider some specific practical examples which may well alter the way we look at this symbiosis in the future. The main area of interest as far as symbiotic studies are concerned is clearly the use of implant technology, particularly where a connection is made between technology and the human brain and/or nervous system. Often pilot tests and experimentation has been carried out apriori to investigate the eventual possibilities before human subjects are themselves involved. Some of the more pertinent animal studies are discussed briefly here. The paper however concentrates on human experimentation, in particular that carried out by the authors themselves, firstly to indicate what possibilities exist as of now with available technology, but perhaps more importantly to also show what might be possible with such technology in the future and how this may well have extensive social effects. The driving force behind the integration of technology with humans on a neural level has historically been to restore lost functionality in individuals who have suffered neurological trauma such as spinal cord damage, or who suffer from a debilitating disease such as lateral amyotrophic sclerosis. Very few would argue against the development of implants to enable such people to control their environment, or some aspect of their own body functions. Indeed this technology in the short term has applications for amelioration of symptoms for the physically impaired, such as alternative senses being bestowed on a blind or deaf individual. However the issue becomes distinctly more complex when it is proposed that such technology be used on those with no medical need, but instead who wish to enhance and augment their own bodies, particularly in terms of their mental attributes. These issues are discussed here in the light of practical experimental test results and their ethical consequences.

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Virtual Reality (VR) has been used in a variety of forms to assist in the treatment of a wide range of psychological illness. VR can also fulfil the need that psychologists have for safe environments in which to conduct experiments. Currently the main barrier against using this technology is the complexity in developing applications. This paper presents two different co-operative psychological applications which have been developed using a single framework. These applications require different levels of co-operation between the users and clients, ranging from full psychologist involvement to their minimal intervention. This paper will also discuss our approach to developing these different environments and our experiences to date in utilising these environments.

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View-based and Cartesian representations provide rival accounts of visual navigation in humans, and here we explore possible models for the view-based case. A visual “homing” experiment was undertaken by human participants in immersive virtual reality. The distributions of end-point errors on the ground plane differed significantly in shape and extent depending on visual landmark configuration and relative goal location. A model based on simple visual cues captures important characteristics of these distributions. Augmenting visual features to include 3D elements such as stereo and motion parallax result in a set of models that describe the data accurately, demonstrating the effectiveness of a view-based approach.

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Livestock are a key asset for the global poor. However, access to relevant information is a critical issue for both livestock development practitioners and the poor themselves. Therefore, the following paper details the creation of an on-line Animal Health Resource Room. The aim was to create an immersive environment, which mimics the benefits of a 3D Virtual Learning Environment without the constraints on download times. Therefore, in the following paper key issues in the dissemination of such a platform such as connectivity and speed are explored within the wider context of the development of the tool itself.