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[Information properties of functional systems: theoretical aspects]
1NII of Normal Physiology RAMN, Moscow, Russia.
Vestnik Rossiiskoi Akademii Meditsinskikh Nauk
|January 1, 1997
Summary
This study introduces the concept of information resonance, proposing that functional systems utilize an "information screen" for status estimation. This screen, molecularly and homeostatically represented, is crucial for system function across various organization levels.
Area of Science:
- Biophysics
- Systems Biology
- Molecular Biology
Context:
- Functional systems exhibit dynamic architectonics based on holographic principles.
- An 'information screen' is proposed as a key component for status estimation within these systems.
- This concept extends to population levels and human interaction with space phenomena.
Purpose:
- To formulate a concept of information resonance in functional systems.
- To hypothesize the molecular and homeostatic representation of the information screen.
- To explore the role of information screens in biological systems and beyond.
Summary:
- The study posits that functional systems employ an information screen, operating on a holographic principle, to assess their status.
- This screen is molecularly composed of membranes, enzymes, DNA/RNA, and homeostatically by colloids and biologically active molecules.
- Cerebral representations include glial colloids and neuronal DNA/RNA, forming an apparatus for action result acceptance.
Impact:
- Provides a novel framework for understanding information processing in biological systems.
- Suggests potential applications in fields ranging from molecular biology to astrobiology.
- Opens new avenues for research into system-level biological organization and function.