DocumentCode :
990767
Title :
Pattern Recognition of Sleep in Rodents Using Piezoelectric Signals Generated by Gross Body Movements
Author :
Flores, A.E. ; Flores, J.E. ; Deshpande, H. ; Picazo, J.A. ; Xinmin Xie ; Franken, P. ; Heller, H.C. ; Grahn, D.A. ; O´Hara, B.F.
Author_Institution :
Dept. of Electr. Eng., Stanford Univ., CA
Volume :
54
Issue :
2
fYear :
2007
Firstpage :
225
Lastpage :
233
Abstract :
Current research on sleep using experimental animals is limited by the expense and time-consuming nature of traditional EEG/EMG recordings. We present here an alternative, noninvasive approach utilizing piezoelectric films configured as highly sensitive motion detectors. These film strips attached to the floor of the rodent cage produce an electrical output in direct proportion to the distortion of the material. During sleep, movement associated with breathing is the predominant gross body movement and, thus, output from the piezoelectric transducer provided an accurate respiratory trace during sleep. During wake, respiratory movements are masked by other motor activities. An automatic pattern recognition system was developed to identify periods of sleep and wake using the piezoelectric generated signal. Due to the complex and highly variable waveforms that result from subtle postural adjustments in the animals, traditional signal analysis techniques were not sufficient for accurate classification of sleep versus wake. Therefore, a novel pattern recognition algorithm was developed that successfully distinguished sleep from wake in approximately 95% of all epochs. This algorithm may have general utility for a variety of signals in biomedical and engineering applications. This automated system for monitoring sleep is noninvasive, inexpensive, and may be useful for large-scale sleep studies including genetic approaches towards understanding sleep and sleep disorders, and the rapid screening of the efficacy of sleep or wake promoting drugs
Keywords :
bioelectric phenomena; medical signal processing; pattern recognition; piezoelectric transducers; piezoelectricity; pneumodynamics; signal classification; sleep; EEG; EMG; breathing; gross body movements; pattern recognition; piezoelectric signals; piezoelectric transducer; respiratory movements; rodents; signal analysis; signal classification; sleep; sleep disorders; wake; Animals; Detectors; Electroencephalography; Electromyography; Motion detection; Pattern recognition; Piezoelectric films; Rodents; Signal generators; Sleep; Activity; automated; behavior; classification; instrumentation; mice; noninvasive; respiration; wake; Animals; Artificial Intelligence; Mice; Mice, Inbred AKR; Mice, Inbred C57BL; Mice, Inbred DBA; Movement; Pattern Recognition, Automated; Polysomnography; Respiratory Mechanics; Sleep; Transducers;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2006.886938
Filename :
4067108
Link To Document :
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