Results for 'Interaction network'

988 found
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  1.  12
    Humans Dominate the Social Interaction Networks of Urban Free-Ranging Dogs in India.Debottam Bhattacharjee & Anindita Bhadra - 2020 - Frontiers in Psychology 11.
    Research on human-animal interaction has skyrocketed in the last decade. Rapid urbanization has led scientists to investigate its impact on several species living in the vicinity of humans. Domesticated dogs (Canis lupus familiaris) are one such species that interact with humans and are also called man’s best friend. However, when it comes to the free-ranging population of dogs, interactions become quite complicated. Unfortunately, studies regarding free-ranging dog-human interactions are limited even though the majority of the world’s dog population is (...)
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  2.  84
    Global diffusion of interactive networks: The impact of culture. [REVIEW]Carleen Maitland - 1999 - AI and Society 13 (4):341-356.
    The Internet and other interactive networks are diffusing across the globe at rates that vary from country to country. Typically, economic and market structure variables are used to explain these differences. The addition of culture to these variables will provide a more robust understanding of the differences in Internet and interactive network diffusion. Existing analyses that identify culture as a predictor of diffusion do not adequately specify the dimensions of culture and their impacts.This paper presents a set of propositions (...)
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  3.  9
    Modeling the Interaction Networks about the Climate Change on Twitter: A Characterization of its Network Structure.Mary Luz Mouronte-López & Marta Subirán - 2022 - Complexity 2022:1-20.
    This work studies the interaction networks that arise on Twitter in relation to such a relevant topic as climate change. We detected that the largest connected component of these networks presents low values of average degree and betweenness, as well as a small diameter compared to the total number of nodes in the network. The largest connected component of retweeting and quoting networks also exhibits very low negative assortativity. The quoting and retweeting networks have a more hierarchical structure (...)
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  4.  82
    Discovering oscillatory interaction networks with M/EEG: challenges and breakthroughs.Satu Palva & J. Matias Palva - 2012 - Trends in Cognitive Sciences 16 (4):219-230.
  5.  9
    Sustainability and interactive network branding in fast‐changing business environments.Stefan Markovic, Nikolina Koporcic, Georges Samara & Ralf Barkemeyer - 2023 - Business Ethics, the Environment and Responsibility 32 (3):877-881.
    Business Ethics, the Environment &Responsibility, Volume 32, Issue 3, Page 877-881, July 2023.
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  6.  21
    Defining Collective Identities in Technopolitical Interaction Networks.Xabier E. Barandiaran, Antonio Calleja-López & Emanuele Cozzo - 2020 - Frontiers in Psychology 11.
    We are currently witnessing the emergence of new forms of collective identities and a redefinition of the old ones through networked digital interactions, and these can be explicitly measured and analyzed. We distinguish between three major trends on the development of the concept of identity in the social realm: (1) an essentialist sense (based on conditions and properties shared by members of a group), (2) a representational or ideational sense (based on the application of categories by oneself or others), and (...)
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  7. The neural correlates of implicit and explicit sequence learning: Interacting networks revealed by the process dissociation procedure.Arnaud Destrebecqz, Philippe Peigneux, Steven Laureys, Christian Degueldre, Guy Del Fiore, Joel Aerts, Andre Luxen, Martia Van Der Linden, Axel Cleeremans & Pierre Maquet - 2005 - Learning and Memory 12 (5):480-490.
    In cognitive neuroscience, dissociating the brain networks that ing—has thus become one of the best empirical situations subtend conscious and nonconscious memories constitutes a through which to study the mechanisms of implicit learning, very complex issue, both conceptually and methodologically.
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  8.  2
    Driver Attribute Filling for Genes in Interaction Network via Modularity Subspace-Based Concept Learning from Small Samples.Fei Xie, Jianing Xi & Qun Duan - 2020 - Complexity 2020:1-12.
    The aberrations of a gene can influence it and the functions of its neighbour genes in gene interaction network, leading to the development of carcinogenesis of normal cells. In consideration of gene interaction network as a complex network, previous studies have made efforts on the driver attribute filling of genes via network properties of nodes and network propagation of mutations. However, there are still obstacles from problems of small size of cancer samples and (...)
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  9.  10
    Driving Protein Conformational Cycles in Physiology and Disease: “Frustrated” Amino Acid Interaction Networks Define Dynamic Energy Landscapes.Rebecca N. D'Amico, Alec M. Murray & David D. Boehr - 2020 - Bioessays 42 (9):2000092.
    A general framework by which dynamic interactions within a protein will promote the necessary series of structural changes, or “conformational cycle,” required for function is proposed. It is suggested that the free‐energy landscape of a protein is biased toward this conformational cycle. Fluctuations into higher energy, although thermally accessible, conformations drive the conformational cycle forward. The amino acid interaction network is defined as those intraprotein interactions that contribute most to the free‐energy landscape. Some network connections are consistent (...)
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  10.  13
    PPI-GA: A Novel Clustering Algorithm to Identify Protein Complexes within Protein-Protein Interaction Networks Using Genetic Algorithm.Naeem Shirmohammady, Habib Izadkhah & Ayaz Isazadeh - 2021 - Complexity 2021:1-14.
    Comprehensive analysis of proteins to evaluate their genetic diversity, study their differences, and respond to the tensions is the main subject of an interdisciplinary field of study called proteomics. The main objective of the proteomics is to detect and quantify proteins and study their post-translational modifications and interactions using protein chemistry, bioinformatics, and biology. Any disturbance in proteins interactive network can act as a source for biological disorders and various diseases such as Alzheimer and cancer. Most current computational methods (...)
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  11.  40
    Extending the modern synthesis with ants: Ant encounters: D. M. Gordon: Ant encounters: interaction networks and colony behavior. Princeton University Press, Princeton, 2010.Heikki Helanterä - 2011 - Biology and Philosophy 26 (6):935-944.
  12.  18
    RNA‐protein interactions: Central players in coordination of regulatory networks.Alexandros Armaos, Elsa Zacco, Natalia Sanchez de Groot & Gian Gaetano Tartaglia - 2021 - Bioessays 43 (2):2000118.
    Changes in the abundance of protein and RNA molecules can impair the formation of complexes in the cell leading to toxicity and death. Here we exploit the information contained in protein, RNA and DNA interaction networks to provide a comprehensive view of the regulation layers controlling the concentration‐dependent formation of assemblies in the cell. We present the emerging concept that RNAs can act as scaffolds to promote the formation ribonucleoprotein complexes and coordinate the post‐transcriptional layer of gene regulation. We (...)
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  13.  10
    Multilayer networks as embodied consciousness interactions. A formal model approach.Camilo Miguel Signorelli & Joaquin Diaz Boils - forthcoming - Phenomenology and the Cognitive Sciences:1-32.
    An algebraic interpretation of multigraph networks is introduced in relation to conscious experience, brain and body. These multigraphs have the ability to merge by an associative binary operator \(\odot \), accounting for biological composition. We also study a mathematical formulation of splitting layers, resulting in a formal analysis of the transition from conscious to non-conscious activity. From this construction, we recover core structures for conscious experience, dynamical content and causal constraints that conscious interactions may impose. An important result is the (...)
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  14.  20
    Components, Networks, and Their Interactions.Phoebe C. Ellsworth - 2018 - Emotion Review 10 (3):232-233.
    Some thoughts on the nature of networks, the prevalence of emotional experiences, and the importance of new questions.
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  15.  21
    Protein-protein interactions: Making sense of networks via graph-theoretic modeling.Nataša Pržulj - 2011 - Bioessays 33 (2):115-123.
    The emerging area of network biology is seeking to provide insights into organizational principles of life. However, despite significant collaborative efforts, there is still typically a weak link between biological and computational scientists and a lack of understanding of the research issues across the disciplines. This results in the use of simple computational techniques of limited potential that are incapable of explaining these complex data. Hence, the danger is that the community might begin to view the topological properties of (...)
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  16.  14
    Network Connectivity Dynamics, Cognitive Biases, and the Evolution of Cultural Diversity in Round‐Robin Interactive Micro‐Societies.José Segovia-Martín, Bradley Walker, Nicolas Fay & Monica Tamariz - 2020 - Cognitive Science 44 (7):e12852.
    The distribution of cultural variants in a population is shaped by both neutral evolutionary dynamics and by selection pressures. The temporal dynamics of social network connectivity, that is, the order in which individuals in a population interact with each other, has been largely unexplored. In this paper, we investigate how, in a fully connected social network, connectivity dynamics, alone and in interaction with different cognitive biases, affect the evolution of cultural variants. Using agent‐based computer simulations, we manipulate (...)
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  17.  9
    Cognitive Networks: Interactivity, Intersubjectivity, and Synergy.Helena Knyazeva - 2017 - Філософія Освіти 20 (1):52-78.
    Some properties of cognitive networks are discussed in the article in the context of the modern achievements of the network science. It is the study in network structures and their surprising properties that gives a new impetus to the development of the theory of complex systems. The analysis of cognitive processes from the point of view of the network structures that arise in them not only fits with such concepts already existing in cognitive science and epistemology, as (...)
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  18. Causal interaction in bayesian networks.Charles Twardy - manuscript
    Artificial Intelligence (AI) and Philosophy of Science share a fundamental problem—that of understanding causality. Bayesian network techniques have recently been used by Judea Pearl in a new approach to understanding causality and causal processes (Pearl, 2000). Pearl’s approach has great promise, but needs to be supplemented with an explicit account of causal interaction. Thus far, despite considerable interest, philosophy has provided no useful account of causal interaction. Here we provide one, employing the concepts of Bayesian networks. With (...)
     
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  19.  36
    Knappett C. An Archaeology of Interaction: Network Perspectives on Material Culture and Society. Oxford: Oxford University Press, 2011. Pp. x + 251, illus. £60. 9780199215454.van Dommelen P. and Knapp A.B. Eds. Material Connections in the Ancient Mediterranean: Mobility, Materiality, and Mediterranean Identities. London: Routledge, 2010. Pp. xvi + 256, illus. £24.99. 9780415586696. [REVIEW]Borja Legarra Herrero - 2013 - Journal of Hellenic Studies 133:258-261.
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  20. Blue Infrastructures: An Exploration of Oceanic Networks and Urban–Industrial–Energy Interactions in the Gulf of Mexico.Asma Mehan & Zachary S. Casey - 2023 - Sustainability 15 (18):1-14.
    Urban infrastructures serve as the backbone of modern economies, mediating global exchanges and responding to urban demands. Yet, our comprehension of these complex structures, particularly within diverse socio-political terrain, remains fragmented. In bridging this knowledge gap, this study delves into “boundary objects”—entities enabling diverse stakeholders to collaborate without a comprehensive consensus. Central to our investigation is the hypothesis that oceanic infrastructural developments are instrumental in molding the interface of urban, industrial, and energy sectors within marine contexts. Our lens is directed (...)
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  21.  64
    Interactions in economic models: Statistical mechanics and networks. [REVIEW]Müge Ozman - 2005 - Mind and Society 4 (2):223-238.
    During the last decade, the interaction based models have received increased attention in economics, mainly with the recognition that modeling aggregate patterns of behavior requires viewing individuals in their social environments continuously in interaction with each other. The existing literature suggests that statistical mechanics tools can be useful to model interactions among economic agents. In addition to statistical mechanics, the network approach has also gained popularity, as is evident in the rising attention attributed to small world models (...)
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  22.  16
    Interacting neural networks and the emergence of social structure.Christina Stoica-Klüver & Jürgen Klüver - 2007 - Complexity 12 (3):41-52.
  23.  8
    Interaction between official institutions and influential users of rumor control in online social networks.Shizhen Bai, Wenya Wu & Man Jiang - 2022 - Frontiers in Psychology 13.
    Online interactions have become major channels for people to obtain and disseminate information during the new normal of COVID-19, which can also be a primary platform for rumor propagation. There are many complex psychological reasons for spreading rumors, but previous studies have not fully analyzed this problem from the perspective of the interaction between official institutions and influential users. The purpose of this study is to determine optimal strategies for official institutions considering the impact of two different influential user (...)
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  24.  30
    Interaction systems and power networks: A reply to mouzelis.Stephan Fuchs - 1992 - Sociological Theory 10 (1):133-134.
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  25. Intersensory Interaction as a Network at the Edge of Chaos.Robert Am Gregson - 1996 - In E. MacCormac & Maxim I. Stamenov (eds.), Fractals of Brain, Fractals of Mind: In Search of a Symmetry Bond. John Benjamins.
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  26.  22
    Social Networking and Personal Genomics: Suggestions for Optimizing the Interaction.Dov Greenbaum & Mark Gerstein - 2009 - American Journal of Bioethics 9 (6-7):15-19.
  27.  41
    The Emergence of Trust Networks under Uncertainty – Implications for Internet Interactions.Coye Cheshire & Karen S. Cook - 2004 - Analyse & Kritik 26 (1):220-240.
    Computer-mediated interaction on the Internet provides new opportunities to examine the links between reputation, risk, and the development of trust between individuals who engage in various types of exchange. In this article, we comment on the application of experimental sociological research to different types of computer-mediated social interactions, with particular attention to the emergence of what we call ‘trust networks’ (networks of those one views as trustworthy). Drawing on the existing categorization systems that have been used in experimental social (...)
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  28.  9
    Traders’ Networks of Interactions and Structural Properties of Financial Markets: An Agent-Based Approach.Linda Ponta & Silvano Cincotti - 2018 - Complexity 2018:1-9.
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  29.  20
    Aegean Interactions: Delos and its Networks in the Third Century by Christy Constantakopoulou.Ephraim Lytle - 2019 - Classical World: A Quarterly Journal on Antiquity 112 (3):243-244.
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  30. That is life: communicating RNA networks from viruses and cells in continuous interaction.Guenther Witzany - 2019 - Annals of the New York Academy of Sciences:1-16.
    All the conserved detailed results of evolution stored in DNA must be read, transcribed, and translated via an RNAmediated process. This is required for the development and growth of each individual cell. Thus, all known living organisms fundamentally depend on these RNA-mediated processes. In most cases, they are interconnected with other RNAs and their associated protein complexes and function in a strictly coordinated hierarchy of temporal and spatial steps (i.e., an RNA network). Clearly, all cellular life as we know (...)
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  31.  34
    Interscale interactions in cortical neural networks.Hans Liljenström - 2000 - Behavioral and Brain Sciences 23 (3):408-409.
    This commentary focuses on how the large-scale cortical dynamics described in Nunez's target article are related to various phenomena at different scales, both spatial and temporal, in particular, how the brain dynamics measured with EEG could relate to (i) experience and mental state, (ii) neuromodulatory effects, and (iii) spontaneous firing and autogenerated electromagnetic effects.
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  32.  25
    Network formation in repeated interactions: experimental evidence on dynamic behaviour. [REVIEW]Michele Bernasconi & Matteo Galizzi - 2010 - Mind and Society 9 (2):193-228.
    Here, we present some experiments of non-cooperative games of network formation based on Bala and Goyal (Econometrica 68:1181–1229, 2000 ). We have looked at the one-way and the two-way flow models, each for high and low link costs. The models come up with both multiple equilibria and coordination problems. We conducted the experiments under various conditions which allowed for repeated interactions between subjects. We found that coordination on non-empty Strict Nash equilibria was not an easy task to achieve, even (...)
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  33. Beyond brain regions: Network perspective of cognition–emotion interactions.Luiz Pessoa - 2012 - Behavioral and Brain Sciences 35 (3):158-159.
    Lindquist et al. provide a convincing case against what they call the locationist account of emotion. Their quantitative approach elegantly illustrates the shortcomings of this still-entrenched viewpoint. Here, I discuss how a network perspective will advance our understanding of structure-function mappings in general, and the relationship between emotion and cognition in the brain.
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  34.  28
    A Novel User Emotional Interaction Design Model Using Long and Short-Term Memory Networks and Deep Learning.Xiang Chen, Rubing Huang, Xin Li, Lei Xiao, Ming Zhou & Linghao Zhang - 2021 - Frontiers in Psychology 12.
    Emotional design is an important development trend of interaction design. Emotional design in products plays a key role in enhancing user experience and inducing user emotional resonance. In recent years, based on the user's emotional experience, the design concept of strengthening product emotional design has become a new direction for most designers to improve their design thinking. In the emotional interaction design, the machine needs to capture the user's key information in real time, recognize the user's emotional state, (...)
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  35.  31
    Networked CSR Governance: A Whole Network Approach to Meta-Governance.Sandra Waddock & Laura Albareda - 2018 - Business and Society 57 (4):636-675.
    Meta-governance is Earth system governance for dealing with the global commons. This article develops a whole network approach to meta-governance to explore the potential for collective action for sustainable development by a loosely coupled network of networks. Networked corporate social responsibility governance has emerged around corporate sustainability and responsibility in the first years of the 21st century. Growing agreements and interactions among CSR initiatives suggest the development, structure, and governance of networked CSR governance as a network that (...)
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  36. Measuring causal interaction in bayesian networks.Charles Twardy - manuscript
    Artificial Intelligence (AI) and Philosophy of Science share a fundamental problem—understanding causality. Bayesian networks have recently been used by Judea Pearl in a new approach to understanding causality (Pearl, 2000). Part of understanding causality is understanding causal interaction. Bayes nets can represent any degree of causal interaction, and researchers normally try to limit interactions, usually by replacing the full CPT with a noisy-OR function. But we show that noisy-OR and another common model are merely special cases of the (...)
     
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  37.  6
    Topology Optimization of Interactive Visual Communication Networks Based on the Non-Line-of-Sight Congestion Control Algorithm.Boya Liu & Xiaobo Zhou - 2020 - Complexity 2020:1-11.
    In this paper, an in-depth study of interactive visual communication of network topology through non-line-of-sight congestion control algorithms is conducted to address the real-time routing problem of adapting to dynamic topologies, and a delay-constrained stochastic routing algorithm is proposed to enable packets to reach GB within the delay threshold in the absence of end-to-end delay information while improving network throughput and reducing network resource consumption. The algorithm requires each sending node to select an available relay set based (...)
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  38.  7
    Interaction of Temporal Lobe Epilepsy and Posttraumatic Stress Disorder: Network Analysis of a Single Case.Iftah Biran, Roee Admon, Tomer Gazit & Firas Fahoum - 2020 - Frontiers in Psychology 11.
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  39. Brain network interactions in health and disease.Deanna M. Barch - 2013 - Trends in Cognitive Sciences 17 (12):603-605.
  40. A new framework for host-pathogen interaction research.Hong Yu, Li Li, Anthony Huffman, John Beverley, Junguk Hur, Eric Merrell, Hsin-hui Huang, Yang Wang, Yingtong Liu, Edison Ong, Liang Cheng, Tao Zeng, Jingsong Zhang, Pengpai Li, Zhiping Liu, Zhigang Wang, Xiangyan Zhang, Xianwei Ye, Samuel K. Handelman, Jonathan Sexton, Kathryn Eaton, Gerry Higgins, Gilbert S. Omenn, Brian Athey, Barry Smith, Luonan Chen & Yongqun He - 2022 - Frontiers in Immunology 13.
    COVID-19 often manifests with different outcomes in different patients, highlighting the complexity of the host-pathogen interactions involved in manifestations of the disease at the molecular and cellular levels. In this paper, we propose a set of postulates and a framework for systematically understanding complex molecular host-pathogen interaction networks. Specifically, we first propose four host-pathogen interaction (HPI) postulates as the basis for understanding molecular and cellular host-pathogen interactions and their relations to disease outcomes. These four postulates cover the evolutionary (...)
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  41.  45
    Mathematical methods for inferring regulatory networks interactions: Application to genetic regulation.J. Aracena & J. Demongeot - 2004 - Acta Biotheoretica 52 (4):391-400.
    This paper deals with the problem of reconstruction of the intergenic interaction graph from the raw data of genetic co-expression coming with new technologies of bio-arrays (DMA-arrays, protein-arrays, etc.). These new imaging devices in general only give information about the asymptotical part (fixed configurations of co-expression or limit cycles of such configurations) of the dynamical evolution of the regulatory networks (genetic and/or proteic) underlying the functioning of living systems. Extracting the casual structure and interaction coefficients of a gene (...)
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  42. Fast Consensus Seeking on Networks with Antagonistic Interactions.Jijun Qu, Zhijian Ji, Chong Lin & Haisheng Yu - 2018 - Complexity 2018:1-15.
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  43.  4
    Jerne's “immune network theory”, of interacting anti‐idiotypic antibodies applied to immune responses during COVID‐19 infection and after COVID‐19 vaccination. [REVIEW]Sven Kurbel - 2023 - Bioessays 45 (9):2300071.
    Niels Kaj Jerne has proposed the “immune network theory” of interactions among anti‐idiotypic antibodies, able to interfere with humoral responses to certain antigens. After the occurrence of the primary generation of antibodies, against an antigenic epitope, idiotypes of these antibodies induce anti‐idiotypic antibodies that modulate the intensity of the first response, and so on. Adverse effects following SARS‐COV‐2 COVID‐19 vaccines are occasionally similar to the symptoms of COVID‐19 infection. Rare events linked to SARS‐CoV‐2 vaccines also resemble some rarely reported (...)
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  44.  10
    Dynamic, small-world social network generation through local agent interactions.Robert De Caux, Christopher Smith, Dominic Kniveton, Richard Black & Andrew Philippides - 2014 - Complexity 19 (6):44-53.
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  45. Scientific Networks on Data Landscapes: Question Difficulty, Epistemic Success, and Convergence.Patrick Grim, Daniel J. Singer, Steven Fisher, Aaron Bramson, William J. Berger, Christopher Reade, Carissa Flocken & Adam Sales - 2013 - Episteme 10 (4):441-464.
    A scientific community can be modeled as a collection of epistemic agents attempting to answer questions, in part by communicating about their hypotheses and results. We can treat the pathways of scientific communication as a network. When we do, it becomes clear that the interaction between the structure of the network and the nature of the question under investigation affects epistemic desiderata, including accuracy and speed to community consensus. Here we build on previous work, both our own (...)
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  46.  18
    Social Distance, Ethics, and Engagement with Social Networks: How Do They Interact?Cid Gonçalves Filho, Flavia Braga Chinelato & Renata de Sousa da Silva Tolentino - 2023 - Journal of Media Ethics 39 (1):33-48.
    Social distance often motivates consumers to increase their interactions through social networking sites. This study identifies antecedents of consumer brand usage and brand connection of SNSs, under the influence of consumer perceived ethics (CPE), during the COVID pandemic and afterward (N = 308). The proposed model was tested using partial least squares-structural equation modeling with AMOS 23. In both periods, this study shows CPE consistently affects consumer engagement and involvement. The results demonstrate that in social isolation, affective engagement has higher (...)
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  47.  21
    Making the right connections: biological networks in the light of evolution.Christopher G. Knight & John W. Pinney - 2009 - Bioessays 31 (10):1080-1090.
    Our understanding of how evolution acts on biological networks remains patchy, as is our knowledge of how that action is best identified, modelled and understood. Starting with network structure and the evolution of protein–protein interaction networks, we briefly survey the ways in which network evolution is being addressed in the fields of systems biology, development and ecology. The approaches highlighted demonstrate a movement away from a focus on network topology towards a more integrated view, placing biological (...)
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  48. More broadly, computer networks have made interaction between.Cultures In Collision - 2002 - In James Moor & Terrell Ward Bynum (eds.), Cyberphilosophy: the intersection of philosophy and computing. Malden, MA: Blackwell.
  49.  42
    Networks, Social Norms and Knowledge Sub-Networks.Carla C. J. M. Millar & Chong Ju Choi - 2009 - Journal of Business Ethics 90 (S4):565 - 574.
    Networks and the World Wide Web seem to provide an answer to efficiently creating and disseminating knowledge resources. Knowledge, however, is ambiguous in character, and contains both explicit (information) and tacit dimensions - the latter being difficult to value as well as to transfer. Participant identity, commitment and behaviour within the network also affect the sharing of knowledge. Hence, existing laws and norms (including property rights) which have been established on the basis of discrete transactions and monetary value-oriented exchange (...)
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  50.  67
    Social Optimization in the Presence of Cognitive Local Optima: Effects of Social Network Topology and Interaction Mode.James Kennedy - 2009 - Topics in Cognitive Science 1 (3):498-522.
    The combined tendency for positive self‐presentation and mimicry or social learning results in the capability of a population of simulated individuals to optimize their cognitive structures. A population of parallel constraint satisfaction networks was created, with globally and locally optimal activation patterns. Individuals started with random activations and interacted to find optimal vectors. Two social network topologies were tested, as well as two modes of interaction; results indicated that the ability to optimize activation vectors depends on the social (...)
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