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VARIABILITY IN THE SEVERITY OF DEVELOPMENTAL DISORDERS: A NEUROCOMPUTATIONAL ACCOUNT OF DEVELOPMENTAL REGRESSION IN AUTISM

机译:发育障碍严重程度的变异性:自闭症中发育回归的神经考试叙述

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Developmental disorders show wide variations in severity even when, on genetic grounds, it is known that there is a common underlying cause. We use connectionist models of development combined with population modelling techniques to explore possible mechanistic causes of variations in disorder severity. Specifically, we investigate the plausibility of the hypothesis that disorder variability stems from the interaction of the common cause of the disorder with variations in neurocomputational parameters also present in the typically developing population. We base our simulations on a model of developmental regression in autism, which proposes that this phenomenon arises from over-aggressive synaptic pruning~1. We simulated a population of 1000 networks in which 641 exhibited the behavioural marker of regression in their developmental trajectories in learning a notional cognitive domain. Aside from the known single cause of the disorder (an atypical connectivity pruning parameter), we then analysed which neurocomputational parameters contributed to variation in a number of characteristics of developmental regression. These included the timing of regression onset, its severity, its behavioural specificity, and the speed and extent of subsequent recovery. Results are related to existing causal frameworks that explain the origins of developmental deficits.
机译:发育障碍表明即使当遗传理由,已知的是,有一个共同的根本原因的严重程度较大变化。我们用发展与人口建模技术相结合的联结模式,探索疾病的严重程度变化的可能机制的原因。具体地,我们研究了该病症可变性从与neurocomputational参数也存在于通常显影人口变化病症的常见原因的相互作用茎的假设的合理性。我们立足于发展回归的自闭症模型,其中提出,这种现象源于过分进取突触修剪〜1我们的模拟。我们模拟了1000个网络,其中641在学习理论上的认知领域表现出回归的行为标记在他们的发展轨迹的群体。除了所述病症(非典型连接修剪参数)的已知单一的原因,我们接着分析了neurocomputational参数促成变异在多个发育倒退的特性。这些包括回归发作随后回收的定时,其严重程度,其行为特异性和的速度和程度。结果与解释发育缺陷的起源存在因果关系框架。

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