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Restricted repetitive behaviors in autism spectrum disorder: A systematic review from the neurovisceral integration perspective

机译:自闭症谱系障碍中受限制的重复行为:从神经垄断整合角度进行系统审查

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摘要

The neurovisceral integration model posits that cognitive-behavioral inflexibility arises from biological inflexibility of feedback loops within the central autonomic network. The parasympathetic nervous system (PNS) is integral in this network. Activity of the PNS, which is normally tonically inhibited, can be indexed through respiratory sinus arrhythmia (RSA). When the PNS becomes disinhibited, indicating decreased flexibility within the network, RSA is reduced and cognitive-behavioral flexibility is impaired. Using this theoretical framework, cognitive-behavioral inflexibility is discussed from the Research Domain Criteria (RDoC) perspective. Restricted repetitive behaviors in autism spectrum disorder (ASD) are proposed as exemplars of cognitive-behavioral inflexibility, and behavioral and RSA literature in ASD are reviewed. RSA differences and their relation to inflexibility in ASD are discussed to support the model and to propose RSA as a biomarker for cognitive-behavioral inflexibility. Considerations for future research are discussed, in addition to implications the model might have on assessment and transdiagnostic treatment practices.
机译:神经垄断集成模型位置,以中央自主网络内的反馈循环的生物学不灵活性产生认知行为inflexibility。副交感神经系统(PNS)在该网络中是一体的。通常会抑制的PNS的活性可以通过呼吸窦性心律失常(RSA)分析。当PNS未解脱时,表示网络内的灵活性降低,RSA减少,并且认知行为灵活性受损。使用这种理论框架,从研究域标准(RDOC)的角度来看,讨论了认知行为屈心。自闭症谱系障碍(ASD)中的受限制的重复行为被提出为认知行为令人厌恶的示例,综述了ASD中的行为和RSA文献。讨论了RSA差异及其与ASD中的不灵活性的关系,以支持该模型,并提出RSA作为用于认知行为不灵活的生物标志物。讨论了未来研究的考虑,除了含义外,该模型可能对评估和转型诊断治疗实践。

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