DocumentCode :
3178212
Title :
The ebb and flow of heart rate variability: simulation of 24 hour heart rate time series using time series data from naturally occurring phenomena
Author :
Langley, P. ; Allen, J. ; Bowers, EJ ; Drinnan, Mj ; Haigh, Aj ; King, St ; Olbrich, T. ; Smith, Fe ; Zheng, D. ; Murray, A.
Author_Institution :
Newcastle Univ., NSW
fYear :
2005
fDate :
25-28 Sept. 2005
Firstpage :
973
Lastpage :
976
Abstract :
Current RR time series simulations are distinguishable from real data by automatic algorithms. We hypothesised that RR time series simulations could be improved by using time series data from naturally occurring phenomena. 20 records of annual river flow data for the river Tyne in north eastern England were obtained. Each river flow data record was used to generate a single 24 h simulated RR time series with the property of self similarity. We compared the standard frequency parameters ULF, VLF, LF and HF normalised to the total power, for the simulated RR, with those from physiological data from 20 subjects. The river flow data produced realistic simulations of RR time series with significant differences between physiological and simulated series for VLF only. Time series data from river flow or other naturally occurring phenomena may provide useful components in producing RR time series with more realistic characteristics than current artificially generated data
Keywords :
bioelectric phenomena; biomedical measurement; medical computing; medical information systems; time series; 24 h; HF ratio; LF ratio; RR time series simulation; ULF ratio; VLF ratio; annual river flow data record; frequency spectrum; heart rate variability; north eastern England; physiological data; river Tyne; Cardiology; Computational modeling; Frequency conversion; Hafnium; Heart beat; Heart rate; Heart rate variability; Hospitals; Iron; Rivers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computers in Cardiology, 2005
Conference_Location :
Lyon
Print_ISBN :
0-7803-9337-6
Type :
conf
DOI :
10.1109/CIC.2005.1588271
Filename :
1588271
Link To Document :
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