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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
111

The role of visual skills and its impact on skills performance of cricket players

Campher, Jolene 20 October 2009 (has links)
Sport has become a very competitive business and focus has been placed on reaching ones full potential. Visual involvement in a sport varies according to environmental demands associated with that sport. These environmental demands are matched by a task specific motor response. The primary aim of this study was to determine if visual skills training programmes could produce beneficial performance results for cricket and soccer players. In order to measure the athletic ability of a cricket and soccer player it is important not only to measure the hardware visual skills of the player, but also the player’s hand-eye co-ordination ability and software visual skills. Thus, aspects of the nervous system such as perceptual motor co-ordination, reaction time and anticipation ability should also be measured to get an indication of the player’s performance ability. In this study highly skilled cricket players and highly skilled soccer academy players, who were actively participating at a provincial level of competition, served as subjects. Due to professional reasons, the soccer academy players had to withdraw from this study. The provincial cricket players continued for the duration of the programme. Thus, due to the abovementioned the aim of this study was two fold, to determine whether statistically significant differences exist between the pre and post-training measurements of cricket players on several visual skills tests and secondly to determine whether statistically significant differences exist between the pre-training measurements of cricket and soccer players on the various visual skills measurements. The data of the variables tested were coded in computer format and statistically evaluated. Since the sample is relatively small non-parametric statistics were used to analyse the data. Two different Non-parametric t-tests were used: the Wilcoxon test is the distribution-free analogue of the t-test for related samples and the Mann-Whitney test is the distribution-free alternative to the independent samples t-test and was used for testing the differences between the means of the cricket players and the soccer players. After the initial testing the cricket players participated in an eight-week visual skill and performance skills programme for 60 minutes a day, once a week. The programme included sports vision activities, speed and agility activities and ball skills activities. Hereafter a retest was done. The pre-training and post-training values of the cricket players were recorded and significance of difference was determined by using the Wilcoxon signed-ranks test. The experimental research revealed that the visual skills programme did have a significant influence on most of the tested variables (ball handling skills, co-ordination, visual awareness, eye tracking skills, accuracy, peripheral awareness, pro-action – reaction skills and visual concentration). For some variables that were tested on the experimental group (the cricket players) improvements were found, which indicates that the improvements can be ascribed to the visual skills programme. The results indicated that more than half of the variables tested improved. It can thus be concluded that the hypothesis that was set for this paper has been proven right. Statistics indicated that there was an increase in most of the variables tested (ball handling skills, co-ordination, visual awareness, eye tracking skills, accuracy, peripheral awareness, proaction – reaction skills and visual concentration), which prove then that visual skills training will result in an increase in the players’ visual fields resulting to an increase in the visual skills on and off the cricket fields. Visual skills training programmes are beneficial to competitive sports performance. Copyright / Dissertation (MA)--University of Pretoria, 2009. / Biokinetics, Sport and Leisure Sciences / unrestricted
112

Construcción de un sistema visual de orientación en la Villa Deportiva Regional del Callao

Flores Cruz, Kamila Alexandra 12 August 2021 (has links)
En la presente investigación se hace uso de las herramientas brindadas por el diseño gráfico para resolver un problema de comunicación visual enfocado en un sistema de orientación ineficaz, en la Villa Deportiva Regional del Callao. Este problema ocasiona que sus usuarios inviertan demasiado tiempo al recorrer el espacio lo que los perjudica en la realización de sus actividades. Por ello, el principal objetivo es demostrar que el diseño es un medio eficaz de resolución de problemas, para ello se hizo uso de las herramientas que brindan el wayfinding, el diseño cartográfico, el diseño háptico, el diseño gráfico ambiental la señalética y el UX/UI para crear una respuesta multicanal al problema presentado. Es decir, proponer un sistema de orientación que actúe eficazmente teniendo en cuenta las necesidades de los usuarios y del espacio. El tipo de investigación es experimental, además se utilizó un enfoque mixto ya que se utiliza el método cuantitativo y cualitativo. Tras la realización de prototipos y pruebas se definió que la propuesta presentada responde de manera eficiente al problema presentado. / This dissertation analize and use the tools provided by graphic design to solve a visual communication problem focused on an ineffective orientation system, in the Callao Sports Village. This problem causes a waste of time for its users because they spend too much time traveling the space, and sometimes can not arrive to their class on time. For this reason, the main objective is to demonstrate that design is an effective means of solving problems, for this investigation were used the tools that provide wayfinding, cartographic design, haptic design, environmental graphic design, signage and UX. / UI to create a multichannel response to the problem presented. The objective, to propose an orientation system that acts effectively taking into account the needs of the users and the space. The type of research is experimental, in addition a mixed approach was used beccause the quantitative and qualitative method is used. After carrying out prototypes and tests, it was defined that the proposal presented responds efficiently to the problem presented. / Trabajo de Suficiencia Profesional
113

Computational Principles of Neural Processing: modulating neural systems through temporally structured stimuli

Castellano, Marta 11 December 2014 (has links)
In order to understand how the neural system encodes and processes information, research has focused on the study of neural representations of simple stimuli, paying no particular attention to it's temporal structure, with the assumption that a deeper understanding of how the neural system processes simpli fied stimuli will lead to an understanding of how the brain functions as a whole [1]. However, time is intrinsically bound to neural processing as all sensory, motor, and cognitive processes are inherently dynamic. Despite the importance of neural and stimulus dynamics, little is known of how the neural system represents rich spatio-temporal stimulus, which ultimately link the neural system to a continuously changing environment. The purpose of this thesis is to understand whether and how temporally-structured neural activity modulates the processing of information within the brain, proposing in turn that, the precise interaction between the spatio-temporal structure of the stimulus and the neural system is particularly relevant, particularly when considering the ongoing plasticity mechanisms which allow the neural system to learn from experience. In order to answer these questions, three studies were conducted. First, we studied the impact of spiking temporal structure on a single neuron spiking response, and explored in which way the functional connections to pre-synaptic neurons are modulated through adaptation. Our results suggest that, in a generic spiking neuron, the temporal structure of pre-synaptic excitatory and inhibitory neurons modulate both the spiking response of that same neuron and, most importantly, the speed and strength of learning. In the second, we present a generic model of a spiking neural network that processes rich spatio-temporal stimuli, and explored whether the processing of stimulus within the network is modulated due to the interaction with an external dynamical system (i.e. extracellular media), as well as several plasticity mechanisms. Our results indicate that the memory capacity, that re ects a dynamic short-term memory of incoming stimuli, can be extended on the presence of plasticity and through the interaction with an external dynamical system, while maintaining the network dynamics in a regime suitable for information processing. Finally, we characterized cortical signals of human subjects (electroencephalography, EEG) associated to a visual categorization task. Among other aspects, we studied whether changes in the dynamics of the stimulus leads to a changes in the neural processing at the cortical level, and introduced the relevance of large-scale integration for cognitive processing. Our results suggest that the dynamic synchronization across distributed cortical areas is stimulus specific and specifically linked to perceptual grouping. Taken together, the results presented here suggest that the temporal structure of the stimulus modulates how the neural system encodes and processes information within single neurons, network of neurons and cortical areas. In particular, the results indicate that timing modulates single neuron connectivity structures, the memory capability of networks of neurons, and the cortical representation of a visual stimuli. While the learning of invariant representations remains as the best framework to account for a number of neural processes (e.g. long-term memory [2]), the reported studies seem to provide support the idea that, at least to some extent, the neural system functions in a non-stationary fashion, where the processing of information is modulated by the stimulus dynamics itself. Altogether, this thesis highlights the relevance of understanding adaptive processes and their interaction with the temporal structure of the stimulus, arguing that a further understanding how the neural system processes dynamic stimuli is crucial for the further understanding of neural processing itself, and any theory that aims to understand neural processing should consider the processing of dynamic signals. 1. Frankish, K., and Ramsey, W. The Cambridge Handbook of Cognitive Science. Cambridge University Press, 2012. // 2. McGaugh, J. L. Memory{a Century of Consolidation. Science 287, 5451 (Jan. 2000), 248{251.
114

Advanced Color Projector Design Based on Human Visual System

Thakur, Mahesh Kumar Singh January 2011 (has links)
No description available.
115

Expression of Selected Cadherins in Adult Zebrafish Visual System and Regenerating Retina, and Microarray Analysis of Gene Expression in Protocadherin-17 Morphants

Marlowe, Alicja 28 July 2022 (has links)
No description available.
116

Implication du récepteur aux cannabinoïdes CB2 dans le développement de la voie rétinothalamique

Duff, Gabriel 08 1900 (has links)
Durant le développement du système visuel, les cellules ganglionnaires de la rétine (CGRs) envoient des axones qui seront influencés par divers signaux guidant leur cône de croissance, permettant ainsi la navigation des axones vers leurs cibles terminales. Les endocannabinoïdes, des dérivés lipidiques activant les récepteurs aux cannabinoides (CB1 et CB2), sont présents de manière importante au cours du développement. Nous avons démontré que le récepteur CB2 est exprimé à différents points du tractus visuel durant le développement du hamster. L’injection d’agonistes et d’agonistes inverses pour le récepteur CB2 a modifié l’aire du cône de croissance et le nombre de filopodes présents à sa surface. De plus, l’injection d’un gradient d’agoniste du récepteur CB2 produit la répulsion du cône de croissance tandis qu’un analogue de l’AMPc (db-AMPc) produit son attraction. Les effets du récepteur CB2 sur le cône de croissance sont produits en modulant l’activité de la protéine kinase A(PKA), influençant la présence à la membrane cellulaire d’un récepteur à la nétrine-1 nommé Deleted in Colorectal Cancer (DCC). Notamment, pour que le récepteur CB2 puisse moduler le guidage du cône de croissance, la présence fonctionnelle du récepteur DCC est essentielle.. Suite à une injection intra-occulaire d’un agoniste inverse du récepteur CB2, nous avons remarqué une augmentation de la longueur des branches collatérales des axones rétiniens au niveau du LTN (noyau lateral terminal). Nous avons également remarqué une diminution de la ségrégation des projections ganglionnaires au niveau du dLGN, le noyau genouillé lateral dorsal, chez les animaux transgéniques cnr2-/-, ayant le gène codant pour le récepteur CB2 inactif. Nos données suggèrent l’implication des endocannabinoïdes et de leur récepteur CB2 dans la modulation des processus de navigation axonale et de ségrégation lors du développement du système visuel. / Retinal projection navigation towards their visual targets is regulated by guidance molecules and growth cone transduction mechanisms. Here, we show that cannabinoid receptor 2 (CB2R) is widely expressed throughout the visual pathway during development and in cultured retinal ganglion cells (RGCs) and cortical neurons. Both the number of filopodia and the surface area of the growth cone (GC) are modulated by CB2R activity in a PKA-dependant manner. Furthermore, DCC is required for CB2R induced morphological changes of the GC. CB2R agonists induce GC chemorepulsion. Treatments altering CB2R activity change retinal explants projections length. These effects are specific to CB2R as no changes were observed in cnr2 knockout mouse. A single intraocular injection of AM630 increases retinal projection branch length and aberrant projections were also observed. Moreover, we report defect in eye-specific segregation of retinal projections in the dLGN in cnr2-/- mice. These findings highlight the modulatory role of endocannabinoids and their CB2R during axon guidance.
117

Neurální substrát magnetické kompasové orientace u myši C57BL/6J / Neural Basis of magnetic compass orientation in C57BL/6J mice

Bláhová, Veronika January 2014 (has links)
The ability to perceive the Earth's magnetic field has been demonstrated in a variety of animals, including representatives of all five classes of vertebrates. The physiological mechanisms underlying magnetic field sensation, however, remain largely unknown. Behavioral, physiological, neuroethological studies and studies using early response genes as neuronal activation markers indicated that a major role in the perception and processing of magnetic information play trigeminal, vestibular and visual systems. Subsequently, magnetic information seem to be integrated with multimodal sensory and motor information within the hippocampal-entorhinal system. In the majority of studies, however, birds have been used as model organisms. In this work I analyzed the neural substrate of magnetic compass orientation in the mouse strain C57BL/6J using markers c-Fos and Egr1. I found that all the aforementioned systems contain neurons responsive to the experimental magnetic fields. This finding demonstrates a complex processing of the magnetic information at level of the central nervous system.
118

Calcul du seuil de visibilité d’une distorsion géometrique locale sur un maillage et ses applications / Evaluating the visibility threshold for a local geometric distortion on a 3D mesh and its applications

Nader, Georges 22 November 2016 (has links)
Les opérations géométriques appliquées aux maillages 3D introduisent des dis torsions géométriques qui peuvent être visibles pour un observateur humain. Dans cette thèse, nous étudions l’impact perceptuel de ces distorsions. Plus précisément, notre objectif est de calculer le seuil à partir duquel les distorsions géométriques locales deviennent visibles. Afin d’atteindre notre but, nous définissons tout d’abord des caractéristiques perceptuelles pour les maillages 3D. Nous avons ensuite effectué une étude expérimentale des propriétés du système visuel humain (sensibilité au contraste et effet du masquage visuel) en observant un maillage 3D. Les résultats de ces expériences sont finalement utilisés pour proposer un algorithme qui calcule le seuil de visibilité relatif à une distorsion locale. L’algorithme proposé s’adapte aux différentes conditions d’affichage (résolution et taille de l’écran), d’illumination et au type de rendu. Enfin, nous montrons l’utilité d’un tel algorithme en intégrant le seuil de visibilité dans le pipeline de plusieurs opérations géométriques (ex: simplification, subdivision adaptative) / Geometric operations applied to a 3D mesh introduce geometric distortion in the form of vertex displacement that can be visible to a human observer. In this thesis, we have studied the perceptual impact of these geometric distortions. More precisely, our goal is to compute the threshold beyond which a local geometric distortion becomes visible. In order to reach this goal, we start by evaluating perceptually relevant properties on 3D meshes. We have then performed a series of psychophysical experiments in which we measured the visibility threshold relative to various properties of the Human Visual System (contrast sensitivity and visual masking). The results of these experiments allowed us to propose an algorithm that computes the visibility threshold relative to a local geometric distortion. This algorithm is capable of adapting to the different display condition of 3D meshes (resolution, display size, illumination condition and rendering). Finally, we showcase the utility of our work by integrating the developed perceptual method in several geometric operations such as mesh simplification and adaptive subdivision
119

Plasticité intermodale chez le hamster énucléé à la naissance : Études de la distribution des interneurones CaBPir dans les cortex visuel et auditif primaires.

Desgent, Sébastien 01 1900 (has links)
La période postnatale et l’expérience sensorielle sont critiques pour le développement du système visuel. Les interneurones inhibiteurs exprimant l’acide γ-aminobutyrique (GABA) jouent un rôle important dans le contrôle de l’activité neuronale, le raffinement et le traitement de l’information sensorielle qui parvient au cortex cérébral. Durant le développement, lorsque le cortex cérébral est très susceptible aux influences extrinsèques, le GABA agit dans la formation des périodes critiques de sensibilité ainsi que dans la plasticité dépendante de l’expérience. Ainsi, ce système inhibiteur servirait à ajuster le fonctionnement des aires sensorielles primaires selon les conditions spécifiques d’activité en provenance du milieu, des afférences corticales (thalamiques et autres) et de l’expérience sensorielle. Certaines études montrent que des différences dans la densité et la distribution de ces neurones inhibiteurs corticaux reflètent les caractéristiques fonctionnelles distinctes entre les différentes aires corticales. La Parvalbumine (PV), la Calretinine (CR) et la Calbindine (CB) sont des protéines chélatrices du calcium (calcium binding proteins ou CaBPs) localisées dans différentes sous-populations d’interneurones GABAergiques corticaux. Ces protéines tamponnent le calcium intracellulaire de sorte qu’elles peuvent moduler différemment plusieurs fonctions neuronales, notamment l’aspect temporel des potentiels d’action, la transmission synaptique et la potentialisation à long terme. Plusieurs études récentes montrent que les interneurones immunoréactifs (ir) aux CaBPs sont également très sensibles à l’expérience et à l’activité sensorielle durant le développement et chez l’adulte. Ainsi, ces neurones pourraient avoir un rôle crucial à jouer dans le phénomène de compensation ou de plasticité intermodale entre les cortex sensoriels primaires. Chez le hamster (Mesocricetus auratus), l’énucléation à la naissance fait en sorte que le cortex visuel primaire peut être recruté par les autres modalités sensorielles, telles que le toucher et l’audition. Suite à cette privation oculaire, il y a établissement de projections ectopiques permanentes entre les collicules inférieurs (CI) et le corps genouillé latéral (CGL). Ceci a pour effet d’acheminer l’information auditive vers le cortex visuel primaire (V1) durant le développement postnatal. À l’aide de ce modèle, l’objectif général de ce projet de thèse est d’étudier l’influence et le rôle de l’activité sensorielle sur la distribution et l’organisation des interneurones corticaux immunoréactifs aux CaBPs dans les aires sensorielles visuelle et auditive primaires du hamster adulte. Les changements dans l’expression des CaBPs ont été déterminés d’une manière quantitative en évaluant les profils de distribution laminaire de ces neurones révélés par immunohistochimie. Dans une première expérience, nous avons étudié la distribution laminaire des CaBPs dans les aires visuelle (V1) et auditive (A1) primaires chez le hamster normal adulte. Les neurones immunoréactifs à la PV et la CB, mais non à la CR, sont distribués différemment dans ces deux cortex primaires dédiés à une modalité sensorielle différente. Dans une deuxième étude, une comparaison a été effectuée entre des animaux contrôles et des hamsters énucléés à la naissance. Cette étude montre que le cortex visuel primaire de ces animaux adopte une chimioarchitecture en PV similaire à celle du cortex auditif. Nos recherches montrent donc qu’une suppression de l’activité visuelle à la naissance peut influencer l’expression des CaBPs dans l’aire V1 du hamster adulte. Ceci suggère également que le type d’activité des afférences en provenance d’autres modalités sensorielles peut moduler, en partie, une circuiterie corticale en CaBPs qui lui est propre dans le cortex hôte ou recruté. Ainsi, nos travaux appuient l’hypothèse selon laquelle il serait possible que certaines de ces sous-populations d’interneurones GABAergiques jouent un rôle crucial dans le phénomène de la plasticité intermodale. / The postnatal period and sensory experience are critical for the development of the visual system. The inhibitory interneurons expressing the γ-aminobutyric acid (GABA) play an important role in the control of neural activity, refinement and treatment of sensory information which reaches the cerebral cortex. During development, when the cerebral cortex is very likely to be influenced by extrinsic factors, GABA acts in the formation of critical period of receptivity as well as in experience dependent plasticity. Thus, this inhibitory system adjusts the functioning of the primary sensory areas according to the specific conditions of activity from the environment, cortical afferents (e.g. of thalamic origin), and sensory experience. Several studies show that differences in the distribution and density of these inhibitory interneurons tend to reflect functional discrepancies between the different neocortical areas. Parvalbumin (PV), Calretinin (CR) and Calbindin (CB) are calcium-binding proteins (CaBPs) found in different sub-populations of GABAergic cortical interneurons. These proteins buffer intracellular calcium levels, which can in turn modulate several neural functions, notably the temporal aspect of action potentials, synaptic transmission and long-term potentiation. Several recent studies are showing that CaBPs immunoreactive (ir) interneurons are also very sensitive to experience and sensory activity during development and adulthood. Therefore, these neurons may have a critical role in intermodal plasticity or compensatory processes between primary sensory cortices. In the hamster (Mesocricetus auratus), after enucleation at birth, the primary visual cortex can be recruited by other sensory modalities such as touch and audition. After this type of visual deprivation, there is establishment of permanent ectopic projections between the inferior colliculus (IC) and the lateral geniculate nucleus (LGN). This phenomenon leads to the rerouting of auditory information to the primary visual cortex (V1) during postnatal development. By using this animal model, the general objective of this thesis is to study the influence and the role of sensory activity on the distribution and organization of cortical interneurons that display immunoreactivity for CaBPs in the primary visual and auditory sensory areas in adult hamsters. Changes in the expression of CaBPs were quantitatively determined by assessing the laminar distribution profiles of cell bodies revealed by immunohistochemistry. In the first experiment, we studied laminar distribution of CaBPs in the primary visual (V1) and auditory (A1) cortices of normal hamsters. PVir and CBir, but not CRir neurons, are distributed in a dissimilar fashion between the two primary cortices devoted to each sensory modality. In the second study, a comparison was performed between control animals and hamsters which were enucleated at birth. The results of this study show that the primary visual cortex of these animals adopts a PVir chemoarchitecture similar to that of the auditory cortex. Our research shows that the abolition of visual activity at birth can influence the expression of CaBPs in V1 of the adult hamster. The present results also suggest that the type of activity in afferents from other sensory modalities can at least in part modulate the cortical circuitry of CaBPs in the host or recruited cortex. Thus, our work supports the hypothesis that sub-populations of GABAergic interneurons may play a critical role in the intermodal cortical plasticity.
120

Implication du récepteur aux cannabinoïdes CB2 dans le développement de la voie rétinothalamique

Duff, Gabriel 08 1900 (has links)
Durant le développement du système visuel, les cellules ganglionnaires de la rétine (CGRs) envoient des axones qui seront influencés par divers signaux guidant leur cône de croissance, permettant ainsi la navigation des axones vers leurs cibles terminales. Les endocannabinoïdes, des dérivés lipidiques activant les récepteurs aux cannabinoides (CB1 et CB2), sont présents de manière importante au cours du développement. Nous avons démontré que le récepteur CB2 est exprimé à différents points du tractus visuel durant le développement du hamster. L’injection d’agonistes et d’agonistes inverses pour le récepteur CB2 a modifié l’aire du cône de croissance et le nombre de filopodes présents à sa surface. De plus, l’injection d’un gradient d’agoniste du récepteur CB2 produit la répulsion du cône de croissance tandis qu’un analogue de l’AMPc (db-AMPc) produit son attraction. Les effets du récepteur CB2 sur le cône de croissance sont produits en modulant l’activité de la protéine kinase A(PKA), influençant la présence à la membrane cellulaire d’un récepteur à la nétrine-1 nommé Deleted in Colorectal Cancer (DCC). Notamment, pour que le récepteur CB2 puisse moduler le guidage du cône de croissance, la présence fonctionnelle du récepteur DCC est essentielle.. Suite à une injection intra-occulaire d’un agoniste inverse du récepteur CB2, nous avons remarqué une augmentation de la longueur des branches collatérales des axones rétiniens au niveau du LTN (noyau lateral terminal). Nous avons également remarqué une diminution de la ségrégation des projections ganglionnaires au niveau du dLGN, le noyau genouillé lateral dorsal, chez les animaux transgéniques cnr2-/-, ayant le gène codant pour le récepteur CB2 inactif. Nos données suggèrent l’implication des endocannabinoïdes et de leur récepteur CB2 dans la modulation des processus de navigation axonale et de ségrégation lors du développement du système visuel. / Retinal projection navigation towards their visual targets is regulated by guidance molecules and growth cone transduction mechanisms. Here, we show that cannabinoid receptor 2 (CB2R) is widely expressed throughout the visual pathway during development and in cultured retinal ganglion cells (RGCs) and cortical neurons. Both the number of filopodia and the surface area of the growth cone (GC) are modulated by CB2R activity in a PKA-dependant manner. Furthermore, DCC is required for CB2R induced morphological changes of the GC. CB2R agonists induce GC chemorepulsion. Treatments altering CB2R activity change retinal explants projections length. These effects are specific to CB2R as no changes were observed in cnr2 knockout mouse. A single intraocular injection of AM630 increases retinal projection branch length and aberrant projections were also observed. Moreover, we report defect in eye-specific segregation of retinal projections in the dLGN in cnr2-/- mice. These findings highlight the modulatory role of endocannabinoids and their CB2R during axon guidance.

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