Department of Psychology, University of Konstanz, Konstanz, Germany. todor.iordanov@uni-konstanz
Clin Neurophysiol. 2011 Dec;122(12):2365-74. doi: 10.1016/j.clinph.2011.05.002. Epub 2011 May 26.
Schizophrenia patients commonly exhibit smaller amplitudes of mismatch negativity (MMN) than in controls. It remains unclear whether this results from deficient processes indexed by MMN or 'normally' though more variable processing. The present magnetoencephalographic study addressed this question by analyzing intra-individual trial-by-trial variability and MMN amplitude.
Twenty inpatients meeting ICD criteria for schizophrenia and 18 healthy controls participated in an auditory oddball experiment. The neuromagnetic mismatch field (MMNm) was defined as the difference waveform deviant minus standard tone response. Variability index (VI) in different frequency bands was quantified as trial-by-trial variation of stimulus-evoked responses and epoch-by-epoch variation of signal amplitude during a resting condition.
Patients displayed a smaller MMNm amplitude and higher VI during the oddball experiment and during the resting condition than in controls. VI and MMNm amplitude were correlated in controls, but not in patients.
Reduced MMN in schizophrenia cannot be explained by augmented variability of brain activity; deficient auditory sensory memory and stimulus related phase-locking may characterize the disorder.
Understanding the contribution of diminished temporal stability of neuronal network dynamics to schizophrenia is crucial in modeling the impact of such instability on performance and thus for understanding deviant attention and memory functions.
精神分裂症患者的失配负波(MMN)振幅通常小于对照组。目前尚不清楚这是由于 MMN 所反映的处理过程缺陷,还是“正常”但更具变异性的处理过程导致的。本脑磁图研究通过分析个体内的逐次试验变异性和 MMN 振幅来解决这个问题。
20 名符合精神分裂症 ICD 标准的住院患者和 18 名健康对照者参加了听觉Oddball 实验。神经磁 MMN 场(MMNm)定义为偏差刺激与标准音响应之间的差值波形。在不同频带中的变异性指数(VI)作为刺激诱发反应的逐次试验变化和静息状态下信号幅度的逐epoch 变化来量化。
与对照组相比,患者在Oddball 实验和静息状态下的 MMNm 振幅较小,VI 较高。在对照组中,VI 和 MMNm 振幅呈正相关,而在患者中则没有相关性。
精神分裂症患者的 MMN 减少不能用大脑活动变异性增加来解释;听觉感觉记忆和与刺激相关的相位锁定缺陷可能是该疾病的特征。
了解神经元网络动力学的时间稳定性降低对精神分裂症的影响对于建模这种不稳定性对表现的影响至关重要,从而有助于理解异常的注意力和记忆功能。