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COMPASS: An Open-Source General-Purpose Software Toolkit for Computational Psychiatry

机译:COMPASS:一种用于计算精神病学的开源通用软件工具包

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摘要

Mathematical modeling of behavior during a psychophysical task, referred to as “computational psychiatry,” could greatly improve our understanding of mental disorders. One barrier to the broader adoption of computational methods, is that they often require advanced statistical modeling and mathematical skills. Biological and behavioral signals often show skewed or non-Gaussian distributions, and very few toolboxes and analytical platforms are capable of processing such signal categories. We developed the Computational Psychiatry Adaptive State-Space (COMPASS) toolbox, an open-source MATLAB-based software package. This toolbox is easy to use and capable of integrating signals with a variety of distributions. COMPASS has the tools to process signals with continuous-valued and binary measurements, or signals with incomplete—missing or censored—measurements, which makes it well-suited for processing those signals captured during a psychophysical task. After specifying a few parameters in a small set of user-friendly functions, COMPASS allows users to efficiently apply a wide range of computational behavioral models. The model output can be analyzed as an experimental outcome or used as a regressor for neural data and can also be tested using the goodness-of-fit measurement. Here, we demonstrate that COMPASS can replicate two computational behavioral analyses from different groups. COMPASS replicates and can slightly improve on the original modeling results. We also demonstrate the use of COMPASS application in a censored-data problem and compare its performance result with naïve estimation methods. This flexible, general-purpose toolkit should accelerate the use of computational modeling in psychiatric neuroscience.
机译:在心理物理任务中被称为“计算精神病学”的行为的数学模型可以极大地增进我们对精神障碍的理解。广泛采用计算方法的一个障碍是,它们通常需要高级的统计建模和数学技能。生物和行为信号通常显示出偏态或非高斯分布,并且很少有工具箱和分析平台能够处理此类信号类别。我们开发了计算精神病学自适应状态空间(COMPASS)工具箱,这是一个基于MATLAB的开源软件包。该工具箱易于使用,并且能够集成各种分布的信号。 COMPASS具有处理具有连续值和二进制测量值的信号,或具有不完整(丢失或审查)测量值的信号的工具,这使其非常适合处理在心理生理任务中捕获的那些信号。在少量的用户友好功能中指定了一些参数后,COMPASS使用户可以有效地应用各种计算行为模型。可以将模型输出作为实验结果进行分析,或者用作神经数据的回归变量,也可以使用拟合优度测量进行测试。在这里,我们证明COMPASS可以复制来自不同组的两个计算行为分析。 COMPASS复制并可以稍微改善原始建模结果。我们还演示了在审查数据问题中使用COMPASS应用程序,并将其性能结果与朴素的估算方法进行了比较。这种灵活的通用工具包应加快精神神经科学中计算模型的使用。

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