FIELD: medicine.
SUBSTANCE: invention refers to medicine, it is intended for training and diagnostics of cognitive-motor function of human operator. Disclosed is a method in which a person being tested is presented with a controlled object (CO) of a given size and shape, as well as a given number of mobile objects (MO) of a given size and shape, which are moved along the monitor of the person being tested in straight-line segments at a given speed. Person being tested identifies the regularity of their movement and transfers the CO to places free from the MO routes, avoiding collisions with the MO and the boundaries of the given CO coverage area. Person being tested moves the CO on the field of the monitor with the help of a joystick. Size, shape of the CO action zone, as well as the CO size, quantity, speed, size, colour, contrast and nature of MO movement are used to form the level of cognitive-motor load in each test or developmental exercise. Parameters and characteristics of the coverage area of the controlled object, as well as parameters and characteristics of the controlled object and mobile objects are selected from the library of the software and hardware complex taking into account the preparedness of the person being tested. At moments of collision of CO with MO or boundary of coverage area of CO, SHC fixes error of person being tested, sends preset sound or light signal. Time to collision with MO or CO coverage area boundary in all tests is automatically fixed by SHC for data analysis and calculation of arithmetic mean value of measured value in specified conditions. Visualization of the mobile objects and the controlled object on the field of action of the person being tested is carried out using virtual reality means, which are fixed on the person being tested. Actions of the person being tested are monitored through external SHC monitors, which synchronously display the video content presented to the person being tested. Person being tested is presented with a symbol of a given size, shape and colour. Colour of the symbol indicates MOs identical in colour, which the person being tested must bypass with their CO, ignoring MOs that are not identical in colour. In the process of testing or training, the colour of the symbol and the colour of one or a given part of the MO is changed by a given program. Value of the cognitive-motor load on the person being tested is selected from a library of programs by setting a combination of size, contrast, brightness of MO, CO and symbol, as well as frequency of changing colours of the symbol and/or a given number of MO. Arithmetic mean value of the time of error-free control of the controlled object is calculated in the given test conditions with different versions of the cognitive-motor load; the obtained quantitative data are compared with those of other subjects under similar conditions. Test subjects are ranked and the level of cognitive-motor function of the tested subject is judged by the average statistical values.
EFFECT: invention provides higher accuracy of assessing the degree of manifestation of cognitive-motor abilities of a person.
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Authors
Dates
2025-02-24—Published
2024-04-24—Filed