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Development of a dynamic computational model of social cognitive theory

机译:社会认知理论动态计算模型的发展

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摘要

Social cognitive theory (SCT) is among the most influential theories of behavior change and has been used as the conceptual basis of health behavior interventions for smoking cessation, weight management, and other health behaviors. SCT and other behavior theories were developed primarily to explain differences between individuals, but explanatory theories of within-person behavioral variability are increasingly needed as new technologies allow for intensive longitudinal measures and interventions adapted from these inputs. These within-person explanatory theoretical applications can be modeled as dynamical systems. SCT constructs, such as reciprocal determinism, are inherently dynamical in nature, but SCT has not been modeled as a dynamical system. This paper describes the development of a dynamical system model of SCT using fluid analogies and control systems principles drawn from engineering. Simulations of this model were performed to assess if the model performed as predicted based on theory and empirical studies of SCT. This initial model generates precise and testable quantitative predictions for future intensive longitudinal research. Dynamic modeling approaches provide a rigorous method for advancing health behavior theory development and refinement and for guiding the development of more potent and efficient interventions.
机译:社会认知理论(SCT)是最有影响力的行为改变理论之一,已被用作戒烟,体重控制和其他健康行为的健康行为干预的概念基础。 SCT和其他行为理论主要是为了解释个体之间的差异而开发的,但是随着新技术允许根据这些输入进行强化的纵向测量和干预,越来越需要人们内部行为变异性的解释理论。这些人内解释性理论应用可以建模为动力学系统。 SCT构造(例如相互确定性)本质上具有内在的动力学性质,但尚未将SCT建模为动力学系统。本文描述了使用流体类比和工程学得出的控制系统原理开发SCT动力学系统模型的过程。对该模型进行仿真,以评估该模型是否根据SCT的理论和经验研究按预期进行。该初始模型为将来的深入纵向研究生成了精确且可测试的定量预测。动态建模方法为推进健康行为理论的发展和完善提供了严格的方法,并为开发更有效和有效的干预措施提供了指导。

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