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The functional anatomy of schizophrenia: A dynamic causal modeling study of predictive coding

机译:精神分裂症的功能解剖:预测性编码的动态因果模型研究

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摘要

This paper tests the hypothesis that patients with schizophrenia have a deficit in selectively attending to predictable events. We used dynamic causal modeling (DCM) of electrophysiological responses – to predictable and unpredictable visual targets – to quantify the effective connectivity within and between cortical sources in the visual hierarchy in 25 schizophrenia patients and 25 age-matched controls. We found evidence for marked differences between normal subjects and schizophrenia patients in the strength of extrinsic backward connections from higher hierarchical levels to lower levels within the visual system. In addition, we show that not only do schizophrenia subjects have abnormal connectivity but also that they fail to adjust or optimize this connectivity when events can be predicted. Thus, the differential intrinsic recurrent connectivity observed during processing of predictable versus unpredictable targets was markedly attenuated in schizophrenia patients compared with controls, suggesting a failure to modulate the sensitivity of neurons responsible for passing sensory information of prediction errors up the visual cortical hierarchy. The findings support the proposed role of abnormal connectivity in the neuropathology and pathophysiology of schizophrenia.
机译:本文检验了以下假设:精神分裂症患者在选择性参加可预测事件方面存在缺陷。我们使用电生理反应的动态因果模型(DCM)–对可预测和不可预测的视觉目标–量化了25位精神分裂症患者和25位年龄匹配的对照在视觉层次中皮质来源内部和皮质来源之间的有效连通性。我们发现证据表明正常受试者与精神分裂症患者在外在向后连接强度(从较高的层次级别到较低的视觉系统级别)之间存在显着差异。此外,我们表明,不仅精神分裂症受试者具有异常的连通性,而且当可以预测事件时,他们也无法调整或优化这种连通性。因此,与对照相比,精神分裂症患者与对照组相比,在可预测目标与不可预测目标的处理过程中观察到的差异性内在递归连通性显着减弱,这表明未能调节负责将预测错误的感觉信息传递到视觉皮层层次的神经元的敏感性。这些发现支持拟议的异常连接在精神分裂症的神经病理学和病理生理学中的作用。

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