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[Operator's systemic quanta under psychoregulating acts]
N A Fudin1, N A Timofeev, S Ia Klassina
1NII of Normal Physiology RAMN, Moscow, Russia.
Vestnik Rossiiskoi Akademii Meditsinskikh Nauk
|January 1, 1997
Summary
This study shows psychoregulatory rehabilitation is effective for computer operators, especially those with parasympathicotonia and high motivation. It highlights systemic quantum activity as a key indicator of functional condition.
Area of Science:
- Psychophysiology
- Occupational Health
- Behavioral Science
Background:
- Computer operators face unique rehabilitation challenges.
- Understanding psychoregulatory effects is crucial for effective occupational rehabilitation.
- K. V. Sudakov's systemic quantum behavior conception provides a framework for analyzing human activity.
Purpose of the Study:
- To examine the psychoregulatory effects on computer operator rehabilitation.
- To assess the efficacy of psychoregulation based on biotypology.
- To identify reliable indicators of functional condition in computer operators.
Main Methods:
- Applied K. V. Sudakov's systemic quantum behavior conception.
- Compared quantum characteristics (motivation, activity result, physiological cost) before and after psychoregulation.
- Analyzed data across different human biotypology groups.
Main Results:
- Systemic quantum of operator activity reliably indicates functional condition.
- Psychoregulation-based rehabilitation is more effective for individuals with parasympathicotonia.
- High initial motivation levels enhance the effectiveness of this rehabilitation approach.
Conclusions:
- Psychoregulatory methods offer an effective rehabilitation strategy for computer operators.
- Individual biotypology, particularly parasympathicotonia and motivation, influences rehabilitation outcomes.
- Systemic quantum activity serves as a valuable biomarker for assessing operator functional status and rehabilitation progress.