DocumentCode :
2737979
Title :
Interference reduction and power optimization in wireless EEG
Author :
Menon, K. A. Unnikrishna ; Kavitha, K. ; Abishek, T.K.
Author_Institution :
Amrita Vishwa Vidyapeethem, Kollam, India
fYear :
2012
fDate :
26-28 July 2012
Firstpage :
1
Lastpage :
5
Abstract :
Designing portable wireless devices for the continuous monitoring of EEG signals, in patients, requires attention to high precision, fast response times, extensive battery life, increased memory, and connectivity. These design factors have been confronted, solutions offered and a comprehensive, reliable and accurate system to wirelessly monitor EEG signals in real-time has been developed. As wireless technology is advancing, the design and development of a more reliable and portable healthcare system is possible. In this paper we propose an efficient wireless sensor network for remote monitoring of patients with neurological disorders that can provide a basic health service to rural areas. As a result, infirm patients will no longer need to travel long distances regularly to reach the nearest healthcare center. Bioelectric signals are often affected by an excessive level of interference, mainly from power supply. In this paper various interference reduction techniques for analog front-end design are considered. Power consumption is another important design challenge for the continuous monitoring. Thus an efficient power reduction technique is considered in the proposed design of a wireless sensor network with reduced interference and optimized power.
Keywords :
biomedical communication; electroencephalography; health care; interference suppression; patient monitoring; wireless sensor networks; EEG signals; analog front-end design; basic health service; bioelectric signals; continuous monitoring; extensive battery life; healthcare center; interference reduction; neurological disorders; portable healthcare system; portable wireless devices; power consumption; power optimization; power supply; remote monitoring; response times; rural areas; wireless EEG; wireless sensor network; wireless technology; Biomedical monitoring; Electroencephalography; Interference; Monitoring; Reliability; Voltage measurement; Compression Algorithm; EEG Design; Interference Reduction; Power optimization; Wireless EEG;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computing Communication & Networking Technologies (ICCCNT), 2012 Third International Conference on
Conference_Location :
Coimbatore
Type :
conf
DOI :
10.1109/ICCCNT.2012.6396085
Filename :
6396085
Link To Document :
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