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Interorganizational Network Structures and Diffusion of Information Through a Health System

机译:组织间的网络结构和通过卫生系统的信息传播

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摘要

Objectives. I used computational models to test the relationship between interorganizational network structures and diffusion of moderate- to high-priority health information throughout a system. I examined diffusion effects of mean and variance in organizational partnering tendencies, arrangement of ties among subgroups of the system, and the diffusing organization’s effective network size.Methods. I used agent-based models to simulate local information-sharing processes and observe the outcomes of system-level diffusion. Graphs of diffusion curves demonstrated differences among intergroup structures, and regression models were used to test effects of parameterized and emergent network variables on diffusion.Results. The average tendency of participating organizations to engage in partnerships with other network members influenced diffusion of information, but variance in partnering tendencies had little effect. Fully connected subgroup structures outperformed hierarchical connections among subgroups, and all outperformed group-to-group chains. Introduction of a small proportion of randomness in connections among members of the chain structure improved diffusion without increasing network density. Finally, greater effective size in the diffusing organization’s network increased diffusion of information.Conclusions. Small interventions that build connecting structures among subgroups within a health system can be particularly effective at facilitating natural dissemination of information.
机译:目标。我使用计算模型来测试组织间网络结构与中到高优先级健康信息在整个系统中的传播之间的关系。我研究了均值和方差对组织合作倾向的扩散影响,系统子组之间关系的排列以及扩散组织的有效网络规模。我使用基于代理的模型来模拟本地信息共享过程,并观察系统级扩散的结果。扩散曲线图显示了组间结构之间的差异,并使用回归模型测试了参数化和紧急网络变量对扩散的影响。参与组织与其他网络成员建立伙伴关系的平均趋势影响了信息的传播,但伙伴关系趋势的变化影响很小。完全连接的子组结构的性能优于子组之间的分层连接,并且所有性能均优于组到组链。在链结构成员之间的连接中引入一小部分随机性可改善扩散,而不会增加网络密度。最后,在分散组织的网络中更大的有效规模增加了信息的扩散。在卫生系统内的亚组之间建立联系结构的小型干预措施,在促进信息的自然传播方面特别有效。

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