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精神分裂症早期视觉处理功能障碍:谐波分析

Dysfunction of early-stage visual processing in schizophrenia: harmonic analysis.

作者信息

Kim Dongsoo, Zemon Vance, Saperstein Alice, Butler Pamela D, Javitt Daniel C

机构信息

Program in Cognitive Neuroscience and Schizophrenia, Nathan Kline Institute for Psychiatric Research, Orangeburg, NY 10962, USA.

出版信息

Schizophr Res. 2005 Jul 1;76(1):55-65. doi: 10.1016/j.schres.2004.10.011. Epub 2004 Dec 15.

DOI:10.1016/j.schres.2004.10.011
PMID:15927798
Abstract

Schizophrenia is associated with severe neurocognitive deficits that constitute a core feature of the disorder. Deficits have been most extensively studied in relationship to higher-order processes. This study evaluated the integrity of early visual processing in order to evaluate the overall pattern of visual dysfunction in schizophrenia. Steady-state visual-evoked potentials (ssVEPs) were recorded over the occipital cortex (Oz) in patients with schizophrenia and schizoaffective disorder (N=26) and in age-matched comparison volunteers (N=22). Two stimuli were used: windmill-dartboard and partial-windmill, which are contrast-reversing ( approximately 4 Hz), radial patterns with dominant low spatial-frequency content. Each stimulus was presented for 1 min. Fourier analysis was performed on the ssVEP data to extract the relevant temporal frequency (i.e., harmonic) components. Magnitude-squared coherence (MSC) was computed to estimate the relative signal level for each frequency component. The patients showed reduced amplitude and coherence of second harmonic responses in both conditions, but intact first harmonic responses in the windmill-dartboard condition. This finding of a differential deficit may indicate a significant loss in the magnocellular pathway, which contributes to the generation of the second harmonic component under these conditions. Early sensory deficits may lead to impairments in subsequent stages of processing.

摘要

精神分裂症与严重的神经认知缺陷相关,这些缺陷是该疾病的核心特征。人们对与高阶过程相关的缺陷进行了最为广泛的研究。本研究评估了早期视觉处理的完整性,以评估精神分裂症患者视觉功能障碍的整体模式。在精神分裂症患者和分裂情感性障碍患者(N = 26)以及年龄匹配的对照志愿者(N = 22)的枕叶皮层(Oz)记录稳态视觉诱发电位(ssVEP)。使用了两种刺激:风车飞镖板和部分风车,它们是对比度反转(约4 Hz)的、具有主导低空间频率内容的径向图案。每个刺激呈现1分钟。对ssVEP数据进行傅里叶分析,以提取相关的时间频率(即谐波)成分。计算幅度平方相干性(MSC)以估计每个频率成分的相对信号水平。在两种情况下,患者的二次谐波反应的幅度和相干性均降低,但在风车飞镖板条件下一次谐波反应完好。这种差异缺陷的发现可能表明大细胞通路存在显著损失,这在这些条件下有助于二次谐波成分的产生。早期感觉缺陷可能导致后续处理阶段的损伤。

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