Network Dynamics and Field Evolution: The Growth of Interorganizational Collaboration in the Life Sciences
Динамика сетей и эволюция поля: развитие межорганизационного сотрудничества в естественно-научных отраслях
2005-01-01
SCID: 54.1/53kj5939
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attachment logicsbiotechnologycohesive subnetworksinterorganizational collaborationnetwork evolution
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Abstract (AI)
A recursive analysis of network and institutional evolution is offered to account for the decentralized structure of the commercial field of the life sciences. Four alternative logics of attachment - accumulative advantage, homophily, follow-the-trend, and multiconnectivity-are tested to explain the structure and dynamics of interorganizational collaboration in biotechnology. Using multiple novel methods, the authors demonstrate how different rules for affiliation shape network evolution. Commercialization strategies pursued by early corporate entrants are supplanted by universities, research institutes, venture capital, and small firms. As organizations increase their collaborative activities and diversify their ties to others, cohesive subnetworks form, characterized by multiple, independent pathways. These structural components, in turn, condition the choices and opportunities available to members of a field, thereby reinforcing an attachment logic based on differential connections to diverse partners. © 2005 by The University of Chicago. All rights reserved.
Key Findings
1
Commercialization leadership shifts from early corporate entrants toward universities, research institutes, venture capital, and small firms.
2
Different affiliation rules produce distinct patterns of network evolution, demonstrating that attachment mechanisms shape collaboration structures.
3
Increasing collaboration and tie diversification generate cohesive subnetworks with multiple independent pathways, which constrain future choices and reinforce connections to diverse partners.
4
It tests four attachment logics—accumulative advantage, homophily, follow-the-trend, and multiconnectivity—to explain interorganizational collaboration dynamics in biotechnology.
5
The study develops a recursive account linking network evolution and institutional evolution to explain the decentralized structure of commercial life sciences.
Research Object
Interorganizational collaboration network in the commercial life sciences field (biotechnology)
Research Subject
The network-attachment logics, structural evolution, and feedback mechanisms shaping collaboration patterns and organizational opportunities
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2005-01-01
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