DocumentCode :
2706447
Title :
Comparison of regional variability in multi-site photoplethysmographic pulse wave characteristics
Author :
Allen, J. ; Murray, A.
Author_Institution :
Dept. of Regional Med. Phys., Freeman Hosp., Newcastle upon Tyne, UK
fYear :
2000
fDate :
2000
Firstpage :
26
Lastpage :
31
Abstract :
The characteristics of the photoplethysmography (PPG) pulse signal depend upon where they are made; with pulses from the various peripheral sites showing differences in amplitude and transit time, and variation of each over time. By studying the pulses obtained simultaneously from 6 peripheral sites (right and left ears, thumbs, and toes), the bilateral and segmental characteristics should allow important information about the peripheral circulation to be extracted. A multisite photoplethysmography pulse measurement and analysis system is described which includes a MATLAB-based suite of signal processing algorithms for analysis of the waveforms on a beat-to-beat basis. Multi-site pulse waveforms were collected from 20 normal subjects whilst they performed a slow paced breathing exercise at 1 breath every 10 s for 300 s. In this study the PPG pulse waveform characteristics at the 3 segmental levels (right and left ears, thumbs, and toes) were assessed using two types of analysis: (i) pulse amplitude and its variability, and (ii) pulse transit time and its variability. The mean calibrated pulse amplitudes were (in arbitrary units); ears (0.023), thumbs (0.043), and toes (0.013), with coefficients of variability; ears and thumbs 14%, and toes 20%. A significant difference in pulse transit time of 4 ms between the right and left toes was detected. The mean overall pulse transit times were; ears (0.133 s), thumbs (0.199 s), and toes (0.302 s), with coefficients of variability; ears 2.6%, thumbs 1.9%, and toes 2.1%. In the study we utilized signal processing algorithms to calculate on a beat-to-beat basis measures of pulsatility and determine a set of normative data for our multi-site pulse system
Keywords :
mathematics computing; medical signal processing; pneumodynamics; 3 segmental levels; MATLAB-based suite; PPG pulse waveform characteristics; beat-to-beat basis; beat-to-beat basis measures; bilateral characteristics; mean calibrated pulse amplitudes; multi-site photoplethysmographic pulse wave characteristics; multi-site pulse waveforms; multisite photoplethysmography pulse measurement; normal subjects; peripheral circulation; peripheral sites; pulsatility; pulse amplitude; pulse transit time; regional variability; segmental characteristics; slow paced breathing exercise; variability;
fLanguage :
English
Publisher :
iet
Conference_Titel :
Advances in Medical Signal and Information Processing, 2000. First International Conference on (IEE Conf. Publ. No. 476)
Conference_Location :
Bristol
ISSN :
0537-9989
Print_ISBN :
0-85296-728-4
Type :
conf
DOI :
10.1049/cp:20000313
Filename :
889947
Link To Document :
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