1,077 research outputs found

    Bridging scholarly theory and forensic practice: toward a more pedagogical model of rhetorical criticism

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    Brian Ott was a professor in the Department of Speech Communication at Colorado State University.Includes bibliographical references (pages 71-74).In this essay, the author contends that competitors in the event of rhetorical criticism, or communication analysis (CA) as it is alternatively called, are locked into a model that poses serious questions about the educational value of the event. In an effort to narrow the ever widening gap between theory and practice and to heighten the pedagogical value of contest rhetorical criticism, the author proposes to chart briefly the chief features of the existing RC model, to identify the limitations posed by that model, and to suggest several viable alternatives

    Intertextuality: interpretive practice and textual strategy

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    Brian Ott was a professor in the Department of Speech Communication at Colorado State University.Includes bibliographical references (pages 444-446).In contemporary media scholarship, the concept of intertextuality is used to describe both an interpretive practice of audiences and a stylistic device consciously employed by producers of media. This study examines how the frequent, scholarly conflation of these two conceptions has weakened the theoretical usefulness of both perspectives. Turning to the view of intertextuality as stylistic device, the essay identifies parodic allusion, creative appropriation, and self-reflexive reference as three distinct intertextual strategies. It concludes by considering the ways audiences use these devices to define their identities and order their experiences

    Critical Media Studies: An Introduction

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    Critical media studies is a state of the arta introduction to media studies that demonstrate how to think critically about the power and influence of the media. Written in an accesible and enganging style, each of the book’s elevan critical perspective according to their focus on media industries, messages and audiences. Rather than treating any single approach to media as the correct one, critical media studies illustrate that different perspective yield different insights and encourages critics to develop facility with multiple perspective. The book combines the best of well tested theory with cutting edge scholarship on the media

    Evolving Networks with Multi-species Nodes and Spread in the Number of Initial Links

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    We consider models for growing networks incorporating two effects not previously considered: (i) different species of nodes, with each species having different properties (such as different attachment probabilities to other node species); and (ii) when a new node is born, its number of links to old nodes is random with a given probability distribution. Our numerical simulations show good agreement with analytic solutions. As an application of our model, we investigate the movie-actor network with movies considered as nodes and actors as links.Comment: 5 pages, 5 figures, submitted to PR

    Impaired Knowledge of Driving Laws Is Associated with Recommended Driving Cessation in Cognitively Impaired Older Adults

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    Background/Aims: The present study examined if knowledge of driving laws independently predicts on-the-road driving performance among cognitively impaired older adults. Methods: The current study consisted of retrospective observational analyses on 55 cognitively impaired older adults (77.9 ± 6.4 years) that completed an on-the-road driving evaluation, a 20-item knowledge test of driving laws, and a brief cognitive test battery. Results: Logistic regression found poorer performance on the knowledge test was significantly associated with greater likelihood of recommended driving cessation beyond important demographic and cognitive variables (p Conclusion: Cognitively impaired patients’ ability to drive may be related to their knowledge regarding common driving laws, in addition to their current level of cognitive functioning

    Three-dimensional organotypic co-culture model of intestinal epithelial cells and macrophages to study Salmonella enterica colonization patterns

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    Three-dimensional models of human intestinal epithelium mimic the differentiated form and function of parental tissues often not exhibited by two-dimensional monolayers and respond to Salmonella in key ways that reflect in vivo infections. To further enhance the physiological relevance of three-dimensional models to more closely approximate in vivo intestinal microenvironments encountered by Salmonella, we developed and validated a novel three-dimensional co-culture infection model of colonic epithelial cells and macrophages using the NASA Rotating Wall Vessel bioreactor. First, U937 cells were activated upon collagen-coated scaffolds. HT-29 epithelial cells were then added and the three-dimensional model was cultured in the bioreactor until optimal differentiation was reached, as assessed by immunohistochemical profiling and bead uptake assays. The new co-culture model exhibited in vivo-like structural and phenotypic characteristics, including three-dimensional architecture, apical-basolateral polarity, well-formed tight/adherens junctions, mucin, multiple epithelial cell types, and functional macrophages. Phagocytic activity of macrophages was confirmed by uptake of inert, bacteria-sized beads. Contribution of macrophages to infection was assessed by colonization studies of Salmonella pathovars with different host adaptations and disease phenotypes (Typhimurium ST19 strain SL1344 and ST313 strain D23580; Typhi Ty2). In addition, Salmonella were cultured aerobically or microaerobically, recapitulating environments encountered prior to and during intestinal infection, respectively. All Salmonella strains exhibited decreased colonization in co-culture (HT-29-U937) relative to epithelial (HT-29) models, indicating antimicrobial function of macrophages. Interestingly, D23580 exhibited enhanced replication/survival in both models following invasion. Pathovar-specific differences in colonization and intracellular co-localization patterns were observed. These findings emphasize the power of incorporating a series of related three-dimensional models within a study to identify microenvironmental factors important for regulating infection

    High-resolution temporal profiling of transcripts during Arabidopsis leaf senescence reveals a distinct chronology of processes and regulation

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    Leaf senescence is an essential developmental process that impacts dramatically on crop yields and involves altered regulation of thousands of genes and many metabolic and signaling pathways, resulting in major changes in the leaf. The regulation of senescence is complex, and although senescence regulatory genes have been characterized, there is little information on how these function in the global control of the process. We used microarray analysis to obtain a highresolution time-course profile of gene expression during development of a single leaf over a 3-week period to senescence. A complex experimental design approach and a combination of methods were used to extract high-quality replicated data and to identify differentially expressed genes. The multiple time points enable the use of highly informative clustering to reveal distinct time points at which signaling and metabolic pathways change. Analysis of motif enrichment, as well as comparison of transcription factor (TF) families showing altered expression over the time course, identify clear groups of TFs active at different stages of leaf development and senescence. These data enable connection of metabolic processes, signaling pathways, and specific TF activity, which will underpin the development of network models to elucidate the process of senescence
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