949 resultados para Visual support


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Process-aware information systems, ranging from generic workflow systems to dedicated enterprise information systems, use work-lists to offer so-called work items to users. In real scenarios, users can be confronted with a very large number of work items that stem from multiple cases of different processes. In this jungle of work items, users may find it hard to choose the right item to work on next. The system cannot autonomously decide which is the right work item, since the decision is also dependent on conditions that are somehow outside the system. For instance, what is “best” for an organisation should be mediated with what is “best” for its employees. Current work-list handlers show work items as a simple sorted list and therefore do not provide much decision support for choosing the right work item. Since the work-list handler is the dominant interface between the system and its users, it is worthwhile to provide an intuitive graphical interface that uses contextual information about work items and users to provide suggestions about prioritisation of work items. This paper uses the so-called map metaphor to visualise work items and resources (e.g., users) in a sophisticated manner. Moreover, based on distance notions, the work-list handler can suggest the next work item by considering different perspectives. For example, urgent work items of a type that suits the user may be highlighted. The underlying map and distance notions may be of a geographical nature (e.g., a map of a city or office building), but may also be based on process designs, organisational structures, social networks, due dates, calendars, etc. The framework proposed in this paper is generic and can be applied to any process-aware information system. Moreover, in order to show its practical feasibility, the paper discusses a full-fledged implementation developed in the context of the open-source workflow environment YAWL, together with two real examples stemming from two very different scenarios. The results of an initial usability evaluation of the implementation are also presented, which provide a first indication of the validity of the approach.

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Process models provide visual support for analyzing and improving complex organizational processes. In this paper, we discuss differences of process modeling languages using cognitive effectiveness considerations, to make statements about the ease of use and quality of user experience. Aspects of cognitive effectiveness are of importance for learning a modeling language, creating models, and understanding models. We identify the criteria representational clarity, perceptual discriminability, perceptual immediacy, visual expressiveness, and graphic parsimony to compare and assess the cognitive effectiveness of different modeling languages. We apply these criteria in an analysis of the routing elements of UML Activity Diagrams, YAWL, BPMN, and EPCs, to uncover their relative strengths and weaknesses from a quality of user experience perspective. We draw conclusions that are relevant to the usability of these languages in business process modeling projects.

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The provision of visual support to individuals with an autism spectrum disorder (ASD) is widely recommended. We explored one mechanism underlying the use of visual supports: efficiency of language processing. Two groups of children, one with and one without an ASD, participated. The groups had comparable oral and written language skills and nonverbal cognitive abilities. In two semantic priming experiments, prime modality and prime–target relatedness were manipulated. Response time and accuracy of lexical decisions on the spoken word targets were measured. In the first uni-modal experiment, both groups demonstrated significant priming effects. In the second experiment which was cross-modal, no effect for relatedness or group was found. This result is considered in the light of the attentional capacity required for access to the lexicon via written stimuli within the developing semantic system. These preliminary findings are also considered with respect to the use of visual support for children with ASD.

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Au croisement de l’anthropologie médicale, de la communication, du design industriel et des nouvelles technologies de l’information, ce mémoire se penche sur les difficultés communicatives rencontrées par le personnel médical et les patients de provenances culturelles variées dans le milieu des urgences hospitalières à Montréal. Dans l’optique d’améliorer l’échange au poste de triage, la réflexion porte principalement sur la pertinence et les caractéristiques d’un support visuel d’appoint. Elle aborde la problématique par l’étude des concepts de perception, de compréhension, d’interprétation et de représentation graphique sous les angles théoriques de la communication visuelle (Benjamin, Berger, Dibi-Huberman), de la sémiologie du discours social (Verón) et du jeu herméneutique (Gadamer). Les systèmes symboliques de cent cinquante images, illustrant sur Internet trois symptômes propres à la gastro-entérite, ont été analysés d’après une méthodologie mixte quantitative et qualitative afin d’identifier leurs sens dénotatifs et connotatifs. Les résultats appuient le recours à des images pour contourner les barrières langagières et révèlent l’existence d’une culture médicale visuelle internationale dont le code iconographique est hybride et pluriculturel. Ces nouvelles informations indiquent des critères de performance et des hypothèses concernant les changements occasionnés par l’ajout d’un support visuel dans la dynamique communicationnelle de l’ETC. La recherche ouvre aussi une piste vers l’étude herméneutique du produit en design industriel.

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Introduction : Les soins dentaires des enfants autistes représentent un défi pour les parents et les dentistes. Des efforts doivent être faits afin d’améliorer les mesures préventives et l’éducation des parents. Recension des écrits : L’autisme se définit comme un désordre qualitatif de l’interaction sociale et de la communication, par des comportements ou activités répétitifs et stéréotypés et par de l’hypersensibilité aux stimuli corporels. Le manque de coopération pour le brossage des dents constitue un obstacle au maintien d’une bonne hygiène bucco-dentaire chez l’enfant autiste. Problématique : L’enfant autiste représente un défi pour le dentiste, mais aussi pour ses parents lors des mesures quotidiennes d’hygiène. Peu d’études cliniques se sont penchées sur l’utilité des pictogrammes dans la dispensation des soins dentaires quotidiens et professionnels de cette clientèle. Hypothèse de recherche : L’utilisation de pictogrammes améliore la coopération des enfants autistes pour les soins dentaires quotidiens et chez le dentiste, leur procurant une meilleure hygiène bucco-dentaire. Matériels et méthodes : Selon un devis d’étude expérimentale randomisée, 17 participants expérimentaux (avec pictogrammes) et 18 participants contrôles ont été recrutés au CHU Sainte-Justine, puis évalués à 6 reprises sur 12 mois. L’hygiène fut notée par l’indice de plaque et le comportement par l’échelle de Frankl. Résultats : Aucune différence significative n’a été notée entre le groupe expérimental et contrôle pour l’indice de plaque et l’échelle de Frankl. Globalement, une baisse de l’indice de plaque et une amélioration du comportement ont été notées pour les deux groupes et ce, pendant la période d’étude de 12 mois. Conclusion : Les résultats de la présente étude ne permettent pas d’affirmer que les pictogrammes contribuent à améliorer l’hygiène bucco-dentaire et le comportement des enfants autistes lors des soins dentaires quotidiens et professionnels.

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Mode of access: Internet.

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Choosing a single similarity threshold for cutting dendrograms is not sufficient for performing hierarchical clustering analysis of heterogeneous data sets. In addition, alternative automated or semi-automated methods that cut dendrograms in multiple levels make assumptions about the data in hand. In an attempt to help the user to find patterns in the data and resolve ambiguities in cluster assignments, we developed MLCut: a tool that provides visual support for exploring dendrograms of heterogeneous data sets in different levels of detail. The interactive exploration of the dendrogram is coordinated with a representation of the original data, shown as parallel coordinates. The tool supports three analysis steps. Firstly, a single-height similarity threshold can be applied using a dynamic slider to identify the main clusters. Secondly, a distinctiveness threshold can be applied using a second dynamic slider to identify “weak-edges” that indicate heterogeneity within clusters. Thirdly, the user can drill-down to further explore the dendrogram structure - always in relation to the original data - and cut the branches of the tree at multiple levels. Interactive drill-down is supported using mouse events such as hovering, pointing and clicking on elements of the dendrogram. Two prototypes of this tool have been developed in collaboration with a group of biologists for analysing their own data sets. We found that enabling the users to cut the tree at multiple levels, while viewing the effect in the original data, is a promising method for clustering which could lead to scientific discoveries.

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After the recent prolonged drought conditions in many parts of Australia it is increasingly recognised that many groundwater systems are under stress. Although this is obvious for systems that are utilised for intensive irrigation many other groundwater systems are also impacted.Management strategies are highly variable to non-existent. Policy and regulation are also often inadequate, and are reactive or politically driven. In addition, there is a wide range of opinion by water users and other stakeholders as to what is “reasonable”management practice. These differences are often related to the “value”that is put on the groundwater resource. Opinions vary from “our right to free water”to an awareness that without effective management the resource will be degraded. There is also often misunderstanding of surface water-groundwater linkages, recharge processes, and baseflow to drainage systems.

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An intelligent system that emulates human decision behaviour based on visual data acquisition is proposed. The approach is useful in applications where images are used to supply information to specialists who will choose suitable actions. An artificial neural classifier aids a fuzzy decision support system to deal with uncertainty and imprecision present in available information. Advantages of both techniques are exploited complementarily. As an example, this method was applied in automatic focus checking and adjustment in video monitor manufacturing. Copyright © 2005 IFAC.

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This paper presents the use of immersive virtual reality systems in the educational intervention with Asperger students. The starting points of this study are features of these students' cognitive style that requires an explicit teaching style supported by visual aids and highly structured environments. The proposed immersive virtual reality system, not only to assess the student's behavior and progress, but also is able to adapt itself to the student's specific needs. Additionally, the immersive reality system is equipped with sensors that can determine certain behaviors of the students. This paper determines the possible inclusion of immersive virtual reality as a support tool and learning strategy in these particular students' intervention. With this objective two task protocols have been defined with which the behavior and interaction situations performed by participant students are recorded. The conclusions from this study talks in favor of the inclusion of these virtual immersive environments as a support tool in the educational intervention of Asperger syndrome students as their social competences and executive functions have improved.