989 resultados para automatic virtual camera
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This Portfolio of Exploration (PoE) tracks a transformative learning developmental journey that is directed at changing meaning making structures and mental models within an innovation practice. The explicit purpose of the Portfolio is to develop new and different perspectives that enable the handling of new and more complex phenomena through self transformation and increased emotional intelligence development. The Portfolio provides a response to the question: ‘What are the key determinants that enable a Virtual Team (VT) to flourish where flourishing means developing and delivering on the firm’s innovative imperatives?’ Furthermore, the PoE is structured as an investigation into how higher order meaning making promotes ‘entrepreneurial services’ within an intra-firm virtual team, with a secondary aim to identify how reasoning about trust influence KGPs to exchange knowledge. I have developed a framework which specifically focuses on the effectiveness of any firms’ Virtual Team (VT) through transforming the meaning making of the VT participants. I hypothesized it is the way KGPs make meaning (reasoning about trust) which differentiates the firm as a growing firm in the sense of Penrosean resources: ‘inducement to expand and a limit of expansion’ (1959). Reasoning about trust is used as a higher order meaning-making concept in line with Kegan’s (1994) conception of complex meaning making, which is the combining of ideas and data in ways that transform meaning and implicates participants to find new ways of knowledge generation. Simply, it is the VT participants who develop higher order meaning making that hold the capabilities to transform the firm from within, providing a unique competitive advantage that enables the firm to grow.
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The advent of modern wireless technologies has seen a shift in focus towards the design and development of educational systems for deployment through mobile devices. The use of mobile phones, tablets and Personal Digital Assistants (PDAs) is steadily growing across the educational sector as a whole. Mobile learning (mLearning) systems developed for deployment on such devices hold great significance for the future of education. However, mLearning systems must be built around the particular learner’s needs based on both their motivation to learn and subsequent learning outcomes. This thesis investigates how biometric technologies, in particular accelerometer and eye-tracking technologies, could effectively be employed within the development of mobile learning systems to facilitate the needs of individual learners. The creation of personalised learning environments must enable the achievement of improved learning outcomes for users, particularly at an individual level. Therefore consideration is given to individual learning-style differences within the electronic learning (eLearning) space. The overall area of eLearning is considered and areas such as biometric technology and educational psychology are explored for the development of personalised educational systems. This thesis explains the basis of the author’s hypotheses and presents the results of several studies carried out throughout the PhD research period. These results show that both accelerometer and eye-tracking technologies can be employed as an Human Computer Interaction (HCI) method in the detection of student learning-styles to facilitate the provision of automatically adapted eLearning spaces. Finally the author provides recommendations for developers in the creation of adaptive mobile learning systems through the employment of biometric technology as a user interaction tool within mLearning applications. Further research paths are identified and a roadmap for future of research in this area is defined.
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We present a quantitative phase microscopy method that uses a Bayer mosaic color camera to simultaneously acquire off-axis interferograms in transmission mode at two distinct wavelengths. Wrapped phase information is processed using a two-wavelength algorithm to extend the range of the optical path delay measurements that can be detected using a single temporal acquisition. We experimentally demonstrate this technique by acquiring the phase profiles of optically clear microstructures without 2pi ambiguities. In addition, the phase noise contribution arising from spectral channel crosstalk on the color camera is quantified.
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Segmentation of anatomical and pathological structures in ophthalmic images is crucial for the diagnosis and study of ocular diseases. However, manual segmentation is often a time-consuming and subjective process. This paper presents an automatic approach for segmenting retinal layers in Spectral Domain Optical Coherence Tomography images using graph theory and dynamic programming. Results show that this method accurately segments eight retinal layer boundaries in normal adult eyes more closely to an expert grader as compared to a second expert grader.
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Although people do not normally try to remember associations between faces and physical contexts, these associations are established automatically, as indicated by the difficulty of recognizing familiar faces in different contexts ("butcher-on-the-bus" phenomenon). The present fMRI study investigated the automatic binding of faces and scenes. In the face-face (F-F) condition, faces were presented alone during both encoding and retrieval, whereas in the face/scene-face (FS-F) condition, they were presented overlaid on scenes during encoding but alone during retrieval (context change). Although participants were instructed to focus only on the faces during both encoding and retrieval, recognition performance was worse in the FS-F than in the F-F condition ("context shift decrement" [CSD]), confirming automatic face-scene binding during encoding. This binding was mediated by the hippocampus as indicated by greater subsequent memory effects (remembered > forgotten) in this region for the FS-F than the F-F condition. Scene memory was mediated by right parahippocampal cortex, which was reactivated during successful retrieval when the faces were associated with a scene during encoding (FS-F condition). Analyses using the CSD as a regressor yielded a clear hemispheric asymmetry in medial temporal lobe activity during encoding: Left hippocampal and parahippocampal activity was associated with a smaller CSD, indicating more flexible memory representations immune to context changes, whereas right hippocampal/rhinal activity was associated with a larger CSD, indicating less flexible representations sensitive to context change. Taken together, the results clarify the neural mechanisms of context effects on face recognition.
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© 2015 IEEE.In virtual reality applications, there is an aim to provide real time graphics which run at high refresh rates. However, there are many situations in which this is not possible due to simulation or rendering issues. When running at low frame rates, several aspects of the user experience are affected. For example, each frame is displayed for an extended period of time, causing a high persistence image artifact. The effect of this artifact is that movement may lose continuity, and the image jumps from one frame to another. In this paper, we discuss our initial exploration of the effects of high persistence frames caused by low refresh rates and compare it to high frame rates and to a technique we developed to mitigate the effects of low frame rates. In this technique, the low frame rate simulation images are displayed with low persistence by blanking out the display during the extra time such image would be displayed. In order to isolate the visual effects, we constructed a simulator for low and high persistence displays that does not affect input latency. A controlled user study comparing the three conditions for the tasks of 3D selection and navigation was conducted. Results indicate that the low persistence display technique may not negatively impact user experience or performance as compared to the high persistence case. Directions for future work on the use of low persistence displays for low frame rate situations are discussed.
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© 2015 IEEE.We consider the problem of verification of software implementations of linear time-invariant controllers. Commonly, different implementations use different representations of the controller's state, for example due to optimizations in a third-party code generator. To accommodate this variation, we exploit input-output controller specification captured by the controller's transfer function and show how to automatically verify correctness of C code controller implementations using a Frama-C/Why3/Z3 toolchain. Scalability of the approach is evaluated using randomly generated controller specifications of realistic size.
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This research validates a computerized dietary selection task (Food-Linked Virtual Response or FLVR) for use in studies of food consumption. In two studies, FLVR task responses were compared with measures of health consciousness, mood, body mass index, personality, cognitive restraint toward food, and actual food selections from a buffet table. The FLVR task was associated with variables which typically predict healthy decision-making and was unrelated to mood or body mass index. Furthermore, the FLVR task predicted participants' unhealthy selections from the buffet, but not overall amount of food. The FLVR task is an inexpensive, valid, and easily administered option for assessing momentary dietary decisions.
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esde el año 2004 la Licenciatura en Matemáticas, consecuente con el principio de pertinencia de la Investigación en la Universidad de Cundinamarca, emprendió acciones inmediatas orientadas a generar procesos de innovación modernizadora en la formación de docentes investigadores en Educación Matemática que contribuyeran con la construcción gradual de bases sólidas para la línea de investigación del programa10, eje articulador del proyecto curricular.
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La naturaleza del pensamiento de los profesores es una área de considerable interés y la atención hacia la relevancia de la geometría como un importante componente formativo es un hecho en los planteamientos interesados en la formación inicial y continuada del profesorado. En el ámbito de la investigación cualitativa, presentaremos las contribuciones de un entorno virtual para el desarrollo crítico del contenido del conocimiento profesional del profesor de matemática. Específicamente, analizar un proceso teleinteractivo docente a partir de situaciones de enseñanza-aprendizaje en geometría (para alumnos con 11-14 años). La importancia del proceso teleinteractivo para el desarrollo de habilidades metacognitivas en los profesores es un hecho destacable en las conclusiones de la investigación.
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Se analizan resultados de un estudio con alumnos de secundaria, en el que se utiliza un modelo virtual de la balanza para la enseñanza de la resolución de ecuaciones de primer grado. A diferencia del modelo concreto o diagramático, el modelo virtual es dinámico e interactivo y en su versión ampliada (balanza con poleas) incluye la representación y resolución de ecuaciones con sustracción de términos. Los resultados indican que al final del estudio, los alumnos logran extender el método algebraico de resolución a una variedad amplia de modalidades de ecuaciones y que de manera espontánea infieren el método de transposición de términos. Con el fin de investigar los procesos de producción de sentido y de construcción de significado, se adopta una perspectiva semiótica que incorpora al análisis las producciones sígnicas de los estudiantes, como parte de la interacción entre los sistemas de signos algebraico, aritmético y el sistema de signos del modelo.
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Este trabalho tem como objetivo apresentar uma reflexão sobre o processo de aprendizagem do conceito de Função Exponencial no Ensino Médio, a partir da utilização do jogo Torre de Hanói virtual, através do uso de laptops educacionais. Os dados foram coletados por meio de um questionário inicial, para identificação das ideias prévias dos estudantes e por meio de registros em um diário de campo. Em seguida, os dados foram analisados conforme a metodologia Análise Textual Discursiva. A partir da análise, emergiram duas categorias: a primeira indica que a ideia inicial apresentada pelos alunos em relação à Função Exponencial está associada a uma caracterização da linguagem ligada à Função Quadrática. Já, a segunda categoria aponta uma transformação da linguagem natural do entendimento da função exponencial para a linguagem formal, isto é, a formalização escolarizada do conceito de Função Exponencial.
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El estudio tiene como propósito investigar los procesos de transferencia del aprendizaje situado de la sintaxis algebraica para la resolución de ecuaciones lineales, cuando se utiliza un modelo de enseñanza concreto, virtual y dinámico con estudiantes de nivel secundaria. Al final del estudio, los alumnos muestran un avance significativo en la resolución de ecuaciones y se puede decir que en su mayoría logran realizar la transferencia de las acciones efectuadas con el sistema de signos del modelo concreto (balanza virtual) a acciones que se ejecutan con el sistema de signos del álgebra. A su vez, se observó que los procesos de transferencia pasan por diferentes etapas, dependiendo del sistema de signos hacia el cual se logra la transferencia de acciones.
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Este estudio tiene como objetivo examinar cómo los futuros profesores de secundaria (EPS) reconocen evidencias de la comprensión del proceso de generalización en estudiantes de secundaria. Los EPS realizaron dos tareas: (1) describir las respuestas dadas por estudiantes de secundaria a dos problemas de generalización lineal y agrupar las que reflejaban características comunes de la comprensión del proceso de generalización; (2) participar en un debate virtual sobre las características de la comprensión del proceso de generalización. Los resultados indican que la participación en el debate virtual permitió a los EPS centrar su mirada en las ideas que subyacen en el proceso de generalización (generalización cercana y lejana e intento de expresar la regla general, pasando de una estrategia aditiva a una funcional) más que en el procedimiento realizado.