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Dysconnectivity of the inferior frontal gyrus: implications for an impaired self-other distinction in patients with schizophrenia.

机译:下额回的不连通性:对精神分裂症患者自我-其他差异的影响。

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Ego disturbances in schizophrenia might be caused by a failure of the efference copy mechanism, which compares efferent with reafferent signals and attenuates the sensory consequences of self-produced movements. We carried out a functional magnetic resonance imaging study in which 16 patients with schizophrenia and 16 healthy matched controls were studied while performing both intentional and unintentional continuous hand movements in two consecutive experiments. We periodically varied the delay of visual feedback to create a sensory-motor discrepancy. Exclusively for intentional movements the activation pattern of the inferior frontal gyrus (IFG) in patients was opposite to that of controls: less attenuated during time-congruent feedback and less activated during time-incongruent feedback. Additionally, several functional connections within the mismatch detection network (IFG with insula, putamen, medial orbitofrontal cortex) were affected. Also, activity of the dysconnected orbitofrontal cortex was correlated with ego disturbance in patients. We discuss that in healthy individuals the IFG might enable a distinction between self and non-self using time-characteristics of feedback, whereas in patients this sensory mismatch detection appears to be altered. Moreover, due to the dysconnectivity of the IFG, the efferent and reafferent signal exchange between perceptual and motor areas seems to be affected. This might cause self-monitoring deficits in patients, phenomena that contribute to the emergence of ego disturbances.
机译:精神分裂症的自我干扰可能是由于复制机制的失败引起的,该复制机制将传出信号与后代信号进行比较,并减弱了自我产生的运动的感觉结果。我们进行了功能磁共振成像研究,在两个连续的实验中,研究了16名精神分裂症患者和16名健康匹配对照,同时进行了有意和无意的连续手部运动。我们会定期更改视觉反馈的延迟,以产生感觉运动差异。仅针对故意运动,患者下额回(IFG)的激活模式与对照组相反:在时间一致的反馈过程中衰减较小,而在时间不一致的反馈过程中激活较少。此外,失配检测网络(带有绝缘岛,壳核,眶额叶内侧皮质的IFG)内的几个功能连接也受到影响。另外,眼眶额叶皮质连接不良与患者的自我干扰有关。我们讨论了在健康个体中,IFG可能会利用反馈的时间特征来区分自我和非自我,而在患者中,这种感觉失配检测似乎已改变。此外,由于IFG的连通性不佳,在感知区域和运动区域之间传出的信号交换似乎受到影响。这可能会导致患者自我监控不足,这种现象助长了自我干扰的出现。

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