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Computational model for behavior shaping as an adaptive health intervention strategy

机译:行为塑造的计算模型作为自适应健康干预策略

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摘要

Adaptive behavioral interventions that automatically adjust in real-time to participants’ changing behavior, environmental contexts, and individual history are becoming more feasible as the use of real-time sensing technology expands. This development is expected to improve shortcomings associated with traditional behavioral interventions, such as the reliance on imprecise intervention procedures and limited/short-lived effects. JITAI adaptation strategies often lack a theoretical foundation. Increasing the theoretical fidelity of a trial has been shown to increase effectiveness. This research explores the use of shaping, a well-known process from behavioral theory for engendering or maintaining a target behavior, as a JITAI adaptation strategy. A computational model of behavior dynamics and operant conditioning was modified to incorporate the construct of behavior shaping by adding the ability to vary, over time, the range of behaviors that were reinforced when emitted. Digital experiments were performed with this updated model for a range of parameters in order to identify the behavior shaping features that optimally generated target behavior. Narrowing the range of reinforced behaviors continuously in time led to better outcomes compared with a discrete narrowing of the reinforcement window. Rapid narrowing followed by more moderate decreases in window size was more effective in generating target behavior than the inverse scenario. The computational shaping model represents an effective tool for investigating JITAI adaptation strategies. Model parameters must now be translated from the digital domain to real-world experiments so that model findings can be validated.
机译:随着实时传感技术的使用范围的扩大,自适应行为干预能够根据参与者不断变化的行为,环境背景和个人历史进行实时自动调整,这变得越来越可行。预计这种发展将改善与传统行为干预相关的缺点,例如对不精确干预程序的依赖以及有限/短暂的影响。 JITAI的适应策略通常缺乏理论基础。事实证明,增加试验的理论保真度可以提高有效性。这项研究探索了将行为理论中众所周知的过程塑形作为一种JITAI适应策略,该过程用于引发或维持目标行为。修改了行为动力学和操作条件的计算模型,以通过增加随时间变化而变化的行为范围的能力来合并行为塑造的构造。使用此更新的模型对一系列参数进行了数字实验,以识别可最佳生成目标行为的行为塑造特征。与不连续地缩小加固窗口相比,连续不断地缩小加固行为的范围会导致更好的结果。与逆向场景相比,快速缩小然后窗口大小更适度的减小在生成目标行为方面更为有效。计算整形模型是研究JITAI适应策略的有效工具。现在必须将模型参数从数字域转换为真实世界的实验,以便可以验证模型发现。

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