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感受质:整合信息的几何学。

Qualia: the geometry of integrated information.

作者信息

Balduzzi David, Tononi Giulio

机构信息

Department of Psychiatry, University of Wisconsin, Madison, WI, USA.

出版信息

PLoS Comput Biol. 2009 Aug;5(8):e1000462. doi: 10.1371/journal.pcbi.1000462. Epub 2009 Aug 14.

Abstract

According to the integrated information theory, the quantity of consciousness is the amount of integrated information generated by a complex of elements, and the quality of experience is specified by the informational relationships it generates. This paper outlines a framework for characterizing the informational relationships generated by such systems. Qualia space (Q) is a space having an axis for each possible state (activity pattern) of a complex. Within Q, each submechanism specifies a point corresponding to a repertoire of system states. Arrows between repertoires in Q define informational relationships. Together, these arrows specify a quale -- a shape that completely and univocally characterizes the quality of a conscious experience. Phi -- the height of this shape -- is the quantity of consciousness associated with the experience. Entanglement measures how irreducible informational relationships are to their component relationships, specifying concepts and modes. Several corollaries follow from these premises. The quale is determined by both the mechanism and state of the system. Thus, two different systems having identical activity patterns may generate different qualia. Conversely, the same quale may be generated by two systems that differ in both activity and connectivity. Both active and inactive elements specify a quale, but elements that are inactivated do not. Also, the activation of an element affects experience by changing the shape of the quale. The subdivision of experience into modalities and submodalities corresponds to subshapes in Q. In principle, different aspects of experience may be classified as different shapes in Q, and the similarity between experiences reduces to similarities between shapes. Finally, specific qualities, such as the "redness" of red, while generated by a local mechanism, cannot be reduced to it, but require considering the entire quale. Ultimately, the present framework may offer a principled way for translating qualitative properties of experience into mathematics.

摘要

根据整合信息理论,意识的量是由一组元素产生的整合信息量,而体验的质则由其产生的信息关系所规定。本文概述了一个用于刻画此类系统所产生的信息关系的框架。感受质空间(Q)是一个对于复合体的每个可能状态(活动模式)都有一个轴的空间。在Q内,每个子机制指定一个对应于系统状态全集的点。Q中全集之间的箭头定义了信息关系。这些箭头共同指定了一种感受质——一种完全且唯一地表征有意识体验之质的形状。Φ——这种形状的高度——是与该体验相关的意识量。纠缠衡量信息关系相对于其组成关系的不可约程度,规定了概念和模式。从这些前提可以得出几个推论。感受质由系统的机制和状态共同决定。因此,具有相同活动模式的两个不同系统可能产生不同的感受质。反之,两个在活动和连接性上都不同的系统可能产生相同的感受质。活跃和不活跃的元素都指定一种感受质,但被灭活的元素则不然。此外,一个元素的激活通过改变感受质的形状来影响体验。将体验细分为模态和子模态对应于Q中的子形状。原则上,体验的不同方面可以在Q中被分类为不同的形状,并且体验之间的相似性归结为形状之间的相似性。最后,诸如红色的“红性”等特定性质虽然由局部机制产生,但不能归结于此,而是需要考虑整个感受质。最终,当前框架可能为将体验的定性属性转化为数学提供一种有原则的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a408/2713405/db9e16b294d8/pcbi.1000462.g001.jpg

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