FIELD: medicine.
SUBSTANCE: invention pertains to medicine, namely to functional diagnostics and may be used in physiology, hygiene, sport medicine, occupational pathology, valeology. Values of the cumulative fatigue of the organism are calculated by the state of analyser systems, visceral systems, higher nervous activity, and by complex method. Then difference of the values of the cumulative fatigue calculated by complex method and according to the parametres of analyser systems is derived. Then difference between the value of cumulative fatigue calculated by complex method and value of cumulative fatigue calculated by parametres of analyser systems, between the value of the cumulative fatigue calculated by complex method and value of the cumulative fatigue calculated by parametres of visceral systems, between the values of cumulative fatigue calculated by complex method and value of the cumulative fatigue calculated by parametres of higher nervous activity. Values of the three calculated differences are summed by module. Functional involvement coefficient value is calculated in scores as a ratio of the value of the cumulative fatigue calculated by complex method multiplied by three to the total of the three calculated differences. Functional involvement coefficient value less than 5 scores is estimated as low (T) level of integration of functional systems, from 5 scores to 15 scores inclusively estimated as moderate (II) level of integration, from 15 to 25 scores inclusively as pronounced (III) level of integration, from 25 and more scores inclusively as high (IV) level of integration.
EFFECT: method makes it possible to make adequate assessment of the integration of functional systems of the organism by the state of wide range of parameters relating to various systems of the organism.
2 dwg, 2 tbl
Title | Year | Author | Number |
---|---|---|---|
METHOD FOR COMPLEX QUANTITATIVE EVALUATION OF GENERAL BODY FATIGUE | 2006 |
|
RU2315549C1 |
QUANTITATIVE METHOD FOR ESTIMATING GENERAL ORGANISM FATIGUE LEVEL FROM ANALYZER SYSTEM STATE | 2006 |
|
RU2308875C1 |
METHOD FOR QUANTITATIVE EVALUATION OF GENERAL BODY FATIGUE ACCORDING TO THE STATE OF THE SUPREME NEURAL ACTIVITY | 2006 |
|
RU2315548C1 |
METHOD FOR CARRYING OUT QUANTITATIVE ESTIMATION OF GENERAL ORGANISM FATIGUE FROM VISCERAL SYSTEM STATE DATA | 2006 |
|
RU2313796C1 |
METHOD OF QUANTITATIVE EVALUATION OF CARDIOVASCULAR SYSTEM FUNCTION EFFICIENCY | 2010 |
|
RU2438563C2 |
METHOD OF QUANTITATIVE ASSESSMENT OF RESPIRATORY SYSTEM EFFICIENCY | 2009 |
|
RU2392854C1 |
METHOD OF ESTIMATING FUNCTIONAL RESERVES OF HUMAN ORGANISM | 2011 |
|
RU2464935C1 |
METHOD FOR ASSESSING RECOVERY OF FUNCTIONAL STATE OF QUALIFIED ATHLETES | 2023 |
|
RU2823684C1 |
METHOD OF EVALUATION AND PREDICTION OF FUNCTIONAL STATE OF TRANSPORT PROFESSION WORKERS | 2008 |
|
RU2378979C1 |
METHOD FOR SELECTING FUNCTIONALLY SIMILAR ZONES IN ANATOMICALLY COMPLETE RECEPTIVE SENSITIVITY FIELDS | 2001 |
|
RU2217046C2 |
Authors
Dates
2009-06-10—Published
2008-03-03—Filed