FIELD: medicine.
SUBSTANCE: group of inventions relates to medical equipment, namely to means of providing a standard electrocardiogram (ECG) signal for the human body using non-contact ECG sensors. Digital data processing module (DDPM) for providing human body electrocardiogram signals for storage and/or viewing on a remote/local device, the digital data processing module contains an input device configured to receive signals from the human body for a non-contact electrocardiogram from an array of non-contact ECG sensors, a processor configured to perform a selection process that includes obtaining information about the contour of the body from the human body using data obtained from contactless ECG sensors located near the human body, determining one or several body parts located in the body contour using a set of rules embedded in the digital data processing module, linking a group of contactless ECG sensors with each specific part of the body, the choice from each of the specified group of non-contact ECG sensor having the highest signal quality for the part of the body associated with this group of non-contact ECG sensors, the processor is configured to generate a standard ECG signal based on non-contact electrocardiogram signals received from selected non-contact ECG sensors, and an output device for sending this standard ECG signal to a remote/local device. System for providing electrocardiogram (ECG) signals of a human body for storage and/or viewing on a remote/local device, and the system contains a tissue including a sensor panel containing an array of non-contact ECG sensors, a processor, functionally connected to the sensor panel and configured to receive non-contact electrocardiogram signals from non-contact ECG sensors and perform a selection process, and an output device to issue a standard ECG signal to a remote/local device.
EFFECT: method of providing electrocardiogram (ECG) signals of the human body using non-contact ECG sensors is performed by the system.
20 cl, 14 dwg
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Authors
Dates
2019-01-21—Published
2015-09-23—Filed