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神经和精神疾病模型中的噪声。

Noise in models of neurological and psychiatric disorders.

作者信息

Spitzer M, Neumann M

机构信息

Department of Psychiatry, University of Heidelberg, Germany.

出版信息

Int J Neural Syst. 1996 Sep;7(4):355-61. doi: 10.1142/s0129065796000312.

Abstract

The concept of noise has only recently been applied to modelling neuropsychiatric disorders. Two examples of such models are presented. 1. A phantom limb is a neurological condition after the amputation of an extremity. It consists of sensations of the presence of the lost limb and has been attributed to cortical as well as non-cortical mechanisms. A neural network model of phantom limbs is proposed which can parsimoniously account for a large number of clinical features and recent findings of cortical map plasticity after deafferentation. In trained self-organizing feature maps, deafferentation was simulated. Reorganization is shown to be driven by input noise. According to the model, the production of input noise by the deafferented primary sensory neuron drives cortical reorganization in amputees. No such noise is generated and/or conducted to the cortex in paraplegics. 2. Several clinical features of schizophrenia have been related to the ratio of signal to noise in neuronal information processing. In particular, dopamine--which has been implicated in the causation of schizophrenia for decades--has been proposed to modulate signal-to-noise ratio. Data are presented which suggest that schizophrenic thought disorder is the result of a hypodopaminergic state and concomitant increased effects of noise in semantic information processing. Possible functions of noise in the nervous systems are discussed.

摘要

噪声的概念直到最近才被应用于神经精神疾病的建模。本文给出了两个此类模型的例子。1. 幻肢是肢体截肢后的一种神经状况。它包括对已失去肢体存在的感觉,并且被认为归因于皮层以及非皮层机制。本文提出了一种幻肢的神经网络模型,该模型能够简洁地解释大量临床特征以及去传入神经后皮层图谱可塑性的最新研究发现。在经过训练的自组织特征图中,模拟了去传入神经的过程。结果表明,重组是由输入噪声驱动的。根据该模型,去传入神经的初级感觉神经元产生的输入噪声驱动截肢者的皮层重组。而截瘫患者不会产生此类噪声,并且/或者此类噪声不会传导至皮层。2. 精神分裂症的一些临床特征与神经元信息处理中的信噪比有关。特别是,几十年来一直被认为与精神分裂症病因有关的多巴胺,被认为可以调节信噪比。本文给出的数据表明,精神分裂症的思维障碍是多巴胺能低下状态以及语义信息处理中噪声效应增加的结果。本文还讨论了噪声在神经系统中的可能功能。

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