11. Literaturverzeichnis
(Sponsored Links)
Adamic, L. (1999): The Small World Web. In: ECDL ’99: Proceedings of the Third European Conference on Research and Advanced Technology for Digital Libraries, S. 443-452. London, UK: Springer-Verlag.
Ahn, Y., Han, S., Kwak, H., Moon, S. & Jeong, H. (2007): Analysis of topological characteristics of huge online social networking services. In: Proceedings of the 16th international conference on World Wide Web, S. 835-844. Banff, Alberta, Canada: ACM.
Albert, R. & Barabási, A. (2002): Statistical mechanics of complex networks. In: Reviews of Modern Physics , 74, S. 47-97.
Amaral, L. A. N., Scala, A., Barthélémy, M. & Stanley, H. E. (2000): Classes of small-world networks. In: Proceedings of the National Academy of Sciences of the United States of America, 97(21), S. 11149-11152.
Barabási, A. & Albert, R. (1999): Emergence of Scaling in Random Networks. In: Science, 286(5439), S. 509-512.
Barnes, B. (1977): Interests and the growth of knowledge (1. Aufl.). London: Routledge and K. Paul.
Beyer, H. (2001): The theory of evolution strategies (1. Aufl.). Berlin; New York: Springer-Verlag.
Brin, S. & Page, L. (1998): The anatomy of a large-scale hypertextual Web search engine. In: Proceedings of the seventh international conference on World Wide Web 7, S. 107-117. Brisbane, Australia: Elsevier Science Publishers B. V.
BVerfG. (2010, März 2): 1 BvR 256/08. Verfügbar unter: http://www.bverfg.de/entscheidungen/rs20100302_1bvr025608.html. Zugegriffen am 28. Mai 2010.
Castells, M. (2005): Die Internet-Galaxie (1. Aufl.). Wiesbaden: VS Verlag für Sozialwissenschaften.
Choudhury, M. D., Mason, W. A., Hofman, J. M. & Watts, D. J. (2010): Inferring relevant social networks from interpersonal communication. In: Proceedings of the 19th international conference on World Wide Web, S. 301-310. Raleigh, North Carolina, USA: ACM.
Clauset, A., Newman, M. E. J. & Moore, C. (2004): Finding community structure in very large networks. In: Physical Review E, 70(6), S. 066111-1 – 066111-6.
Daft, R. & Lengel, R. (1984): Information Richness: A new approach to managerial behavior and organization design. In: Research in Organizational Behavior, 6, S. 191-233.
Daft, R. & Lengel, R. (1986): Organizational information requirements, media richness and structural design. In: Management Science, 32(5), S. 554-571.
Davidsen, J., Ebel, H. & Bornholdt, S. (2002): Emergence of a Small World from Local Interactions: Modeling Acquaintance Networks. In: Physical Review Letters, 88(12), S. 128701.
Davis, J. A. (1967): Clustering and Structural Balance in Graphs. In: Human Relations, 20(2), S. 181-187.
Dennis, A. R. & Valacich, J. S. (1999): Rethinking Media Richness: Towards a Theory of Media Synchronicity. In: Proceedings of the 32nd Annual Hawaii International Conference on System Sciences, 1, S. 1017-1027. Maui: IEEE Computer Society.
Diaz-Bone, R. (1997): Ego-zentrierte Netzwerkanalyse und familiale Beziehungssysteme (1. Aufl.). Wiesbaden: Dt. Univ.-Vlg.
Doreian, P. (2002): Event sequences as generators of social network evolution. In: Social Networks, 24(2), S. 93-119.
Doreian, P. & Krackhardt, D. (2001): Pre-Transitive Balance Mechanisms for Signed Networks. In: Journal of Mathematical Sociology, 25(1), S. 43-67.
Dunbar, R. I. M. (1993): Coevolution of Neocortical Size, Group Size and Language in Humans. In: Behavioral and Brain Sciences, 16(04), S. 681-735.
Eagle, N., Macy, M. & Claxton, R. (2010): Network Diversity and Economic Development. In: Science, 328(5981), S. 1029-1031.
Ebel, H., Mielsch, L. & Bornholdt, S. (2002): Scale-free topology of e-mail networks. In: cond-mat/0201476. Verfügbar unter: http://arxiv.org/abs/cond-mat/0201476. Zugegriffen am 19. Februar 2009.
Emirbayer, M. & Goodwin, J. (1994): Network Analysis, Culture, and the Problem of Agency. In: The American Journal of Sociology, 99(6), S. 1411-1454.
Erdös, P. & Rényi, A. (1959): On the Random Graphs I. In: Publicationes Mathematicae, (6), S. 290-297.
Fenner, T., Levene, M. & Loizou, G. (2007): A model for collaboration networks giving rise to a power-law distribution with an exponential cutoff. In: Social Networks, 29(1), S. 70-80.
Fowler, J. H. & Christakis, N. A. (2008): Dynamic spread of happiness in a large social network: longitudinal analysis over 20 years in the Framingham Heart Study. In: BMJ, 337(dec04_2), S. a2338.
Freeman, L. & Thompson, C. (1989): Estimating acquaintanceship volume. In: M. Kochen (Hrsg.), The small World, S. 147–158. Norwood, NJ: Ablex Publishing Corporation.
Freeman, L. C. (1979): Centrality in Social Networks Conceptual Clarification. In: Social Networks, 1(3), S. 215-239.
Fu, F., Liu, L. & Wang, L. (2008): Empirical analysis of online social networks in the age of Web 2.0. In: Physica A: Statistical Mechanics and its Applications, 387(2-3), S. 675-684.
Girvan, M. & Newman, M. E. J. (2002): Community structure in social and biological networks. In: Proceedings of the National Academy of Sciences of the United States of America, 99(12), S. 7821-7826.
Glaeser, E. L., Sacerdote, B. & Scheinkman, J. A. (1996): Crime and Social Interactions. In: The Quarterly Journal of Economics, 111(2), S. 507-548.
Goldberg, M., Magdon-Ismail, M., Kelley, S. & Mertsalov, K. (2009): Stable Statistics of the Blogograph. In: Protecting Persons While Protecting the People, Lecture Notes in Computer Science, 5661/2009, S. 104-114. Berlin; New York: Springer-Verlag.
Granovetter, M. S. (1973): The Strength of Weak Ties. In: American Journal of Sociology, 78(6), S. 1360-1380.
Guimera, R., Danon, L., Diaz-Guilera, A., Giralt, F. & Arenas, A. (2003): Self-similar community structure in a network of human interactions. In: Physical Review E, 68(6), S. 065103.
Heider, F. (1946): Attitudes and cognitive organisation. In: The Journal of Psychology, 21, S. 107-112.
Hiltz, S. R. (1985): Online communities (1. Aufl.). Bristol, UK: Intellect Books.
Höflich, J. (1996): Technisch vermittelte interpersonale Kommunikation : Grundlagen, organisatorische Medienverwendung, Konstitution „elektronischer Gemeinschaften“ (1. Aufl.). Opladen: Westdeutscher Verlag.
Holzer, B. (2005): Vom globalen Dorf zur kleinen Welt: Netzwerke und Konnektivität in der Weltgesellschaft. In: B. Heintz (Hrsg.), Weltgesellschaft: theoretische Zugänge und empirische Problemlagen, Zeitschrift für Soziologie, Sonderheft, S. 314-329. Stuttgart: Lucius und Lucius.
Holzer, B. (2006): Netzwerke (1. Aufl.). Bielefeld: Transcript-Verlag.
Hummon, N. P. & Doreian, P. (2003): Some dynamics of social balance processes: bringing Heider back into balance theory. In: Social Networks, 25(1), S. 17-49.
ITU. (2010): ITU estimates two billion people online by end 2010. Verfügbar unter: http://www.itu.int/net/pressoffice/press_releases/2010/39.aspx. Zugegriffen am 21. Oktober 2010.
Jansen, D. (2006): Einführung in die Netzwerkanalyse Grundlagen, Methoden, Forschungsbeispiele (3. Aufl.). Wiesbaden: VS Verlag für Sozialwissenschaften.
Kleimann, B., Özkilic, M. & Göcks, M. (2008): Studieren im Web 2.0: Studienbezogene Web- und E-Learning-Dienste. Verfügbar unter: https://hisbus.his.de/hisbus/docs/hisbus21.pdf. Zugegriffen am 14. Dezember 2008.
Kleinberg, J. M. (2000): The small-world phenomenon: an algorithm perspective. In: Proceedings of the thirty-second annual ACM symposium on Theory of computing, S. 163-170. Portland, Oregon, United States: ACM.
Klemm, K. & Eguíluz, V. (2002): Highly clustered scale-free networks. In: Physical Review E, 65(3).
Kossinets, G. & Watts, D. J. (2006): Empirical Analysis of an Evolving Social Network. In: Science, 311(5757), S. 88-90.
Kratzer, J. & Lettl, C. (2009): Distinctive Roles of Lead Users and Opinion Leaders in the Social Networks of Schoolchildren. In: Journal of Consumer Research, 36(4), S. 646-659.
Kumar, R., Raghavan, P., Rajagopalan, S., Sivakumar, D., Tomkins, A. & Upfal, E. (2000): Stochastic models for the Web graph. In: Proceedings of the 41st Annual Symposium on Foundations of Computer Science, S. 57. Redondo Beach, USA: IEEE Computer Society.
Leskovec, J. & Horvitz, E. (2008): Planetary-scale views on a large instant-messaging network. In: Proceeding of the 17th international conference on World Wide Web, S. 915-924. Beijing, China: ACM.
Leskovec, J., Kleinberg, J. & Faloutsos, C. (2005): Graphs over Time: Densification Laws, Shrinking Diameters and Possible Explanations. In: Proceedings of the International Conference on Knowledge Discovery and Data Mining (KDD’05). Chicago: ACM.
Leskovec, J., Kleinberg, J. & Faloutsos, C. (2007): Graph evolution: Densification and shrinking diameters. In: ACM Transactions on Knowledge Discovery from Data, 1(1), S. 2-41.
Leskovec, J., Lang, K. J., Dasgupta, A. & Mahoney, M. W. (2008): Community Structure in Large Networks: Natural Cluster Sizes and the Absence of Large Well-Defined Clusters. Verfügbar unter: http://arxiv.org/abs/0810.1355. Zugegriffen am 3. Juli 2009.
Lloyd-Smith , J., Schreiber, S., Kopp, P. & Getz, W. (2005): Superspreading and the effect of individual variation on disease emergence. In: Nature, (438), S. 355-359.
Luhmann, N. (2008): Einführung in die Systemtheorie (4. Aufl.). Heidelberg: Auer.
Maslov, S. & Redner, S. (2008): Promise and Pitfalls of Extending Google’s PageRank Algorithm to Citation Networks. In: J. Neurosci., 28(44), S. 11103-11105.
Matsumoto, M. & Nishimura, T. (1998): Mersenne twister: a 623-dimensionally equidistributed uniform pseudo-random number generator. In: ACM Trans. Model. Comput. Simul., 8(1), S. 3-30.
McCue, B. (2002): Another view of the „small world“. In: Social Networks, 24(2), S. 121-133.
Milgram, S. (1967): The Small World Problem. In: Psychology Today , 1(2), S. 60–67.
Newman, M. E. J. (2001): The structure of scientific collaboration networks. In: Proceedings of the National Academy of Sciences USA, 98(2), S. 404-409.
Newman, M. E. J., Moore, C. & Watts, D. J. (1999): Mean-Field Solution of the Small-World Network Model. In: Physical Review Letters, 84(14), S. 3201–3204.
Newman, M. E. J., Strogatz, S. H. & Watts, D. J. (2001): Random graphs with arbitrary degree distributions and their applications. In: Physical Review E, 64(2), S. 026118.
Onnela, J. & Reed-Tsochas, F. (2010): Spontaneous emergence of social influence in online systems. In: Proceedings of the National Academy of Sciences, PNAS Early Edition. Verfügbar unter: http://www.pnas.org/content/early/2010/10/05/0914572107.full.pdf+html. Zugegriffen am 16. Oktober 2010.
Preece, J. (2000): Online communities: designing usability, supporting sociability (1. Aufl.). Chichester [u.a.]: Wiley.
Price, D. J. D. (1965): Networks of Scientific Papers. In: Science, 149(3683), S. 510-515.
Ravid, G. & Rafaeli, S. (2004): Asynchronous discussion groups as Small World and Scale Free Networks. In: First Monday, 9(9). Verfügbar unter: < a href="http://firstmonday.org/htbin/cgiwrap/bin/ojs/index.php/fm/article/viewArticle/1170/1090" target="_blank">http://firstmonday.org/htbin/cgiwrap/bin/ojs/index.php/fm/article/viewArticle/1170/1090. Zugegriffen am 19. Februar 2009.
Salganik, M. J., Dodds, P. S. & Watts, D. J. (2006): Experimental Study of Inequality and Unpredictability in an Artificial Cultural Market. In: Science, 311(5762), S. 854-856.
Seidman, S. B. (1983): Network structure and minimum degree. In: Social Networks, 5(3), S. 269-287.
Smith, R. D. (2002): Instant Messaging as a Scale-Free Network. In: cond-mat/0206378. Verfügbar unter: http://arxiv.org/abs/cond-mat/0206378. Zugegriffen am 27. Juli 2009.
Song, C., Havlin, S. & Makse, H. A. (2006): Origins of fractality in the growth of complex networks. In: Nature Physics, 2(4), S. 275-281.
Spears, R. & Lea, M. (1992): Social influence and the influence of the „social“ in computer-mediated communication. In: M. Lea (Hrsg.), Contexts of computer-mediated communication, S. 30-65. New York: Harvester Wheatsheaf.
Spears, R., Lea, M. & Lee, S. (1990): Deindividuation and group polarisation in computer-mediated communication. In: British Journal of Social Psychology, 29(2), S. 121-134.
Tiberius, V. (2008): Prozesse und Dynamik des Netzwerkwandels (1. Aufl.). Wiesbaden: Gabler.
Travers, J. & Milgram, S. (1969): An Experimental Study of the Small World Problem. In: Sociometry, 32(4), S. 425-443.
Vázquez, A. (2003): Growing network with local rules: Preferential attachment, clustering hierarchy, and degree correlations. In: Physical Review E, 67(5), S. 056104.
Walther, J. B., Anderson, J. F. & Park, D. W. (1994): Interpersonal Effects in Computer-Mediated Interaction: A Meta-Analysis of Social and Antisocial Communication. In: Communication Research, 21(4), S. 460-487.
Wang, J. & Chiu, C. (2008): Recommending trusted online auction sellers using social network analysis. In: Expert Systems with Applications, 34(3), S. 1666-1679.
Wasserman, S. & Faust, K. (2007): Social Network Analysis: Methods and Applications (16. Aufl.). Cambridge: Cambridge University Press.
Watts, D. J. (1999): Networks, Dynamics and the Small-World Phenomenon. In: American Journal of Sociology , 105(2), S. 493–527.
Watts, D. J., Muhamad, R. & Dodds, P. S. (2003): An Experimental Study of Search in Global Social Networks. In: Science, 301, S. 827–829.
Watts, D. J. & Strogatz, S. H. (1998): Collective dynamics of ’small-world‘ networks. In: Nature, 393(6684), S. 440-442.
Yuta, K., Ono, N. & Fujiwara, Y. (2007): A Gap in the Community-Size Distribution of a Large-Scale Social Networking Site. In: physics/0701168. Verfügbar unter: http://arxiv.org/abs/physics/0701168. Zugegriffen am 7. Juli 2009.
Zachary, W. W. (1977): An Information Flow Model for Conflict and Fission in Small Groups. In: Journal of Anthropological Research, 33(4), S. 452-473.
Zhongbao, K. & Changshui, Z. (2003): Reply networks on a bulletin board system. In: Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics, 67(3 Pt 2).