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Binding binding: Departure points for a different version of theperceptual retouch theory

机译:绑定绑定:不同版本的出发点知觉修饰理论

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摘要

In the perceptual retouch theory, masking and related microgenetic phenomena were explained as a result of interaction between specific cortical representational systems and the non-specific sub-cortical modulation system. Masking appears as deprivation of sufficient modulation of the consciousness mechanism suffered by the target-specific signals because of the temporal delay of non-specific modulation (necessary for conscious representation), which explicates the later-coming mask information instead of the already decayed target information. The core of the model envisaged relative magnitudes of EPSPs of single cortical cells driven by target and mask signals at the moment when the nonspecific, presynaptic, excitatory input arrives from the thalamus. In the light of the current evidence about the importance of synchronised activity of specific and non-specific systems in generating consciousness, the retouch theory requires perhaps a different view. This article presents some premises for modification of the retouch theory, where instead of the cumulative presynaptic spike activities and EPSPs of single cells, the oscillatory activity in the gamma range of the participating systems is considered and shown to be consistent with the basic ideas of the retouch theory. In this conceptualisation, O-bindingrefers to specific encoding which is based on gamma-band synchronisedoscillations in the activity of specific cortical sensory modules that representfeatures and objects; C-binding refers to the gamma-band oscillations in theactivity of the non-specific thalamic systems, which is necessary for theO-binding based data to become consciously experienced.
机译:在感知修饰理论中,由于特定的皮层表征系统和非特定的皮层下调制系统之间的相互作用,解释了掩蔽和相关的微遗传现象。由于非特定调制的时间延迟(意识表示所必需),掩蔽表现为剥夺了目标特定信号遭受的意识机制的充分调制,这掩盖了后来出现的掩模信息而不是已经衰减的目标信息。该模型的核心设想了当非特异性,突触前,兴奋性输入来自丘脑时,由靶标和掩蔽信号驱动的单个皮质细胞的EPSP的相对大小。根据有关特定和非特定系统同步活动在产生意识中的重要性的现有证据,润饰理论可能需要不同的观点。本文提出了修饰修饰理论的一些前提,在这些前提下,代替了单个细胞的累积突触前刺突活性和EPSP,而是考虑了参与系统的γ范围内的振荡活性,并证明与该基本原理一致。修饰理论。在这种概念化中,O绑定指基于伽马频带同步的特定编码特定皮层感觉模块活动的振荡特征和对象; C绑定是指在非特异性丘脑系统的活动,这对于基于O绑定的数据变得有意识地经历。

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