From the Phenomenology to the Mechanisms of Consciousness: Integrated Information Theory 3.0
От феноменологии к механизмам сознания: интегрированная информационная теория 3.0
2014-05-08
SCID: 54.1/fr23k9b8
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Integrated Information Theoryconsciousnessintegrated information ΦMaxmaximally irreducible conceptual structurephenomenology
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Abstract (AI)
This paper presents Integrated Information Theory (IIT) of consciousness 3.0, which incorporates several advances over previous formulations. IIT starts from phenomenological axioms: information says that each experience is specific--it is what it is by how it differs from alternative experiences; integration says that it is unified--irreducible to non-interdependent components; exclusion says that it has unique borders and a particular spatio-temporal grain. These axioms are formalized into postulates that prescribe how physical mechanisms, such as neurons or logic gates, must be configured to generate experience (phenomenology). The postulates are used to define intrinsic information as "differences that make a difference" within a system, and integrated information as information specified by a whole that cannot be reduced to that specified by its parts. By applying the postulates both at the level of individual mechanisms and at the level of systems of mechanisms, IIT arrives at an identity: an experience is a maximally irreducible conceptual structure (MICS, a constellation of concepts in qualia space), and the set of elements that generates it constitutes a complex. According to IIT, a MICS specifies the quality of an experience and integrated information ΦMax its quantity. From the theory follow several results, including: a system of mechanisms may condense into a major complex and non-overlapping minor complexes; the concepts that specify the quality of an experience are always about the complex itself and relate only indirectly to the external environment; anatomical connectivity influences complexes and associated MICS; a complex can generate a MICS even if its elements are inactive; simple systems can be minimally conscious; complicated systems can be unconscious; there can be true "zombies"--unconscious feed-forward systems that are functionally equivalent to conscious complexes.
Key Findings
1
A system may contain one major complex and non-overlapping minor complexes; anatomical connectivity influences these complexes and their associated MICS.
2
IIT identifies an experience with a maximally irreducible conceptual structure (MICS), whose quality is specified by its concepts and quantity by integrated information ΦMax.
3
IIT predicts that inactive elements can participate in a conscious complex, simple systems may be minimally conscious, complicated systems may be unconscious, and feed-forward systems can be functionally equivalent but genuinely unconscious zombies.
4
Integrated Information Theory 3.0 formalizes phenomenological axioms of information, integration, and exclusion into postulates governing physical mechanisms that generate experience.
5
The theory defines intrinsic information as differences that make a difference and integrated information as whole-system information irreducible to that of its parts.
Research Object
Integrated Information Theory (IIT) 3.0 and the physical mechanisms and systems that generate consciousness, including neurons and logic gates
Research Subject
The phenomenological axioms, formal postulates, integrated-information structure, and conditions by which physical mechanisms generate and determine the quality and quantity of conscious experience
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2014-05-08
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