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Early Cortical Processing In Schizophrenia

Early Cortical Processing In Schizophrenia
精神分裂症的早期皮质处理
批准号:
7829863
负责人:
DANIEL C. JAVITT
金额:
$5.98万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-06-01 至 2010-10-31

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中文摘要
翻译
精神分裂症传统上与涉及大脑皮层的高阶处理缺陷有关。 前额叶或颞叶海马区等脑区。然而,最近,脑功能障碍 感觉加工的早期阶段也已经被证明。在听觉系统中,精神分裂症 患者表现出失配负波(MMN)的产生受损,这是神经生理学的一个指标 听觉感觉皮层水平的功能障碍,以及听觉N1的生成受损。赤字 MMN的生成与音调匹配测试中的表现缺陷有关,反映出受损 听觉感觉记忆(ASM)表现。类似的缺陷现在已经被记录在视觉上 系统。因此,精神分裂症患者表现出关闭碎片图像的能力受损,反映 枕外侧皮质(LO)水平的功能障碍。此外,P1视觉分量的幅度为 在背侧流区域降低,而腹侧流P1和N1分量的幅度是 相对完好无损。视觉发现与视觉处理受损相一致,特别是在 大细胞视觉通路和背部/腹侧系统相互作用受损。《公约》的总体目标 本研究旨在进一步明确听觉和神经生理功能障碍的机制。 视觉系统缺陷,并评估单个潜在缺陷(例如,NMDA)的程度 功能障碍)可以解释观察到的功能障碍模式。最后,这个项目将开始 评估听觉和视觉处理的单独缺陷在多大程度上导致 高阶过程。 与公共健康相关:精神分裂症是一种严重的精神障碍,影响高达1%的 世界各地的人口。认知功能缺陷预示着发育不良和持续的残疾。这 该项目将分析认知功能障碍的神经基础。
英文摘要
Schizophrenia has traditionally been associated with deficits in high order processing involving cortical regions such as prefrontal or temporohippocampal brain regions. More recently, however, dysfunction of early stages of sensory processing have been demonstrated as well. In the auditory system, schizophrenia patients show impaired generation of mismatch negativity (MMN), an index of neurophysiological dysfunction at the level of auditory sensory cortex, along with impaired generation of auditory N1. Deficits in MMN generation correlate with deficits in performance on tests of tone matching, reflecting impaired auditory sensory memory(ASM) performance. Similar deficits have now been documented in the visual system. Thus, patients with schizophrenia show impaired ability to close fragmented images, reflecting dysfunction at the level of lateral occipital cortex (LO). In addition, amplitude of the P1 visual component is reduced over dorsal stream regions, whereas amplitudes of the ventral stream P1 and N1 components are relatively intact. Visual findings are consistent with impaired visual processing particularly within the magnocellular visual pathway and with impaired dorsal/ventral system interaction. The overall goals of the present study are to further define mechanisms of neurophysiological dysfunction within the auditory and visual systems deficits and to evaluate the degree to which a single underlying deficit (e.g., NMDA dysfunction) could account for the pattern of dysfunction observed. Finally, this project will begin to evaluate the degree to which separate deficits in auditory and visual processing lead to impairments in higher order processes. Relevance to public health: Schizophrenia is a severe mental disorder that affects up to 1% of the population worldwide. Deficits in cognitive function predict poor out come and continued disability. This project will analyze neural basis of cognitive dysfunction.
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