FIELD: medicine.
SUBSTANCE: invention relates to medical equipment, namely to equipment for visualisation of physiological data. Method of monitoring physiological parameters contains stages at which physiological parameters are measured periodically or aperiodically by at least one electronic sensor, with each measured value of physiological parameter having corresponding medical expiry date, determined and continuously visualised are: the last measured value of each measured physiological parameter and its designation, medical expiry date for each measured value of physiological parameter, which represents preliminary specified maximal time, during which value of physiological parameter is visualised, remaining medical term to expiry date of each measured value of physiological parameter for inquired time moment is determined, for each measured physiological parameter with non-zero remaining time period before expiry date determined and visualised on display are: the last measured value of physiological parameter, its designation and indication of remaining medical time period before expiry date in form of indicating the number of days, hours, minutes or seconds, during which reading is visualised, or indication of amount of time before visualisation of the following reading, with removal of reading from display in real time after preliminary configured medical term before expiry date finishes, absence of image is replaced with symbol, showing absence of current reading. Method is realised with application of machine-readable carrier, containing programme, recorded on it, and device for visualisation of data values and designations of patient's physiological parameters, which contains electronic sensors for periodical of aperiodical measurement of values of physiological parameters, processor, programmed for determination of the last measured physiological parameter and display device control.
EFFECT: application of invention makes it possible to increase rapidity of determination of data remoteness of the screen.
8 cl, 13 dwg
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Authors
Dates
2015-07-10—Published
2009-08-11—Filed