An optimal zonal wavelet compression method for ECG data transmission in a wireless telemedicine system achieved a maximum compression ratio of 18:1 with low distortion.
Does optimal zonal wavelet compression allow efficient transmission of ECG data in a wireless telemedicine system?
An optimal zonal wavelet compression method achieved an 18:1 compression ratio with low distortion, enabling real-time ECG transmission over low-bandwidth wireless links.
We have developed a novel emergency telemedicine system which allows the transmission of physiological data (electrocardiogram, oximetry, blood pressure and temperature) and still images of the patient. The transmission is performed through wireless links using either GSM mobile phones or satellite. Because of the low bandwidth available through these links, data compression is required to allow realtime transmission of electrocardiographic (ECG) data. A new integrated design approach for an optimal zonal wavelet compression (OZWC) method was implemented for the ECG data. The performance of the mobile system with compressed ECG data segments was evaluated in terms of the percentage root-mean-square difference and visual inspection. The optimum wavelet algorithm achieved a maximum compression ratio of 18:1 with low distortion.
Istepanian et al. (Mon,) conducted a other in Emergency telemedicine. Optimal zonal wavelet compression (OZWC) was evaluated on Percentage root-mean-square difference and visual inspection. An optimal zonal wavelet compression method for ECG data transmission in a wireless telemedicine system achieved a maximum compression ratio of 18:1 with low distortion.