An equipment to support the medical diagnosis and the studies of human balance in real time is being developed. This equipment is based on a recent technique which quantifies the movement of the eyes based on digital image processing. During the development of the equipment, modifications to the original algorithm were applied to improve its performance, since a faster camera is being used. The purpose of this work is to show the improvements applied to this fast algorithm. These improvements are intended to decrease even more the processing time.
An equipment to support the medical diagnosis and the studies of human balance in real time is being developed. This equipment is based on a recent technique which quantifies the movement of the eyes based on digital image processing. During the development of the equipment, modifications to the original algorithm were applied to improve its performance, since a faster camera is being used. The purpose of this work is to show the improvements applied to this fast algorithm. These improvements are intended to decrease even more the processing time.
This research purposes the development of a telemedicine system capable of remote monitoring and digitalization the patients biological signals. It includes a mobile device which transmits the patient electroencephalogram (EEG) and electrocardiogram (ECG) to a monitoring host using the wireless communication, allowing mobility to the patient in hospital or in his daily routine.
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