WISER Neuromodulation Program, Department of Psychiatry, National Institute of Mental Health and Neurosciences, Bangalore, India.
WISER Neuromodulation Program, Department of Psychiatry, National Institute of Mental Health and Neurosciences, Bangalore, India; Department of Clinical Neurosciences, National Institute of Mental Health And Neuro Sciences (NIMHANS), India.
Asian J Psychiatr. 2024 Sep;99:104158. doi: 10.1016/j.ajp.2024.104158. Epub 2024 Jul 14.
Dysregulated prediction error-signalling may explain auditory hallucinations in schizophrenia (SZ-AH). Roving mismatch negativity (rMMN) is an event-related potential (ERP) index where the deviant tone becomes the new standard with repetitions. Longer repetitions of standard stimuli yield a more positive sensory-adaptation response (Repetition Positivity-RP), elicit a stronger deviance-detection when interrupted (deviant negativity-DN), and the difference waveform between them reflects the strength of prediction-error signalling (mismatch negativity-MMN).
Twenty-three SZ-AH patients and twenty-three healthy controls (HC) underwent rMMN assessment. Various standard stimuli were repeated in sets of 3, 8 and 33 yielding three components for RP (RP3, RP8, RP33), DN (DN3, DN8, DN33), and MMN (MMN3, MMN8, MMN33). Amplitudes and latencies were compared across groups. Correlation between (a) rMMN amplitudes and latencies, and clinical variables in SZ-AH, and (b) the RP-DN amplitude pair for all three repetition sets (3, 8, 33) were also examined.
All DN and MMN33 amplitudes were significantly suppressed in SZ-AH, while RP amplitudes were not. MMN33 latency was significantly longer in SZ-AH than HC. A few amplitudes and latencies significantly correlated with the frequency of AH. HC showed a significant positive correlation between RP-DN amplitude pairs for sets of 3 and 8 but not for 33; SZ-AH group's correlation profile was opposite to this.
The link between repetition-dependent sensory-adaptation and deviance-detection is perturbed in SZ-AH. The unimpaired RP profile in SZ-AH is due to potential interference of AH with auditory information processing, and does not indicate a preserved short-term plasticity of the echoic memory trace.
预测误差信号的失调可能解释了精神分裂症(SZ-AH)中的听觉幻觉。游走性失匹配负波(rMMN)是一种事件相关电位(ERP)指标,其中变调成为重复时的新标准。标准刺激的重复次数越多,产生的感觉适应反应(重复正性-RP)越正,当被打断时产生的偏差检测越强(偏差负性-DN),它们之间的差异波形反映了预测误差信号的强度(失匹配负波-MM)。
23 名 SZ-AH 患者和 23 名健康对照(HC)接受了 rMMN 评估。各种标准刺激以 3、8 和 33 的倍数重复,产生 3 个 RP(RP3、RP8、RP33)、DN(DN3、DN8、DN33)和 MMN(MMN3、MMN8、MMN33)成分。比较组间的振幅和潜伏期。还检查了 SZ-AH 中 rMMN 振幅和潜伏期与临床变量之间的相关性,以及所有三个重复集(3、8、33)的 RP-DN 振幅对之间的相关性。
所有的 DN 和 MMN33 振幅在 SZ-AH 中均显著抑制,而 RP 振幅则不然。MMN33 潜伏期在 SZ-AH 中明显长于 HC。少数振幅和潜伏期与 AH 的频率显著相关。HC 在 3 和 8 的重复集之间的 RP-DN 振幅对之间存在显著正相关,但在 33 时则没有;SZ-AH 组的相关谱与此相反。
重复依赖性感觉适应与偏差检测之间的联系在 SZ-AH 中受到干扰。SZ-AH 中未受影响的 RP 谱是由于 AH 对听觉信息处理的潜在干扰所致,并不表明回声记忆痕迹的短期可塑性未受损。