Literature DB >> 10475577

Characterization of common carotid artery blood-flow waveforms in normal human subjects.

D W Holdsworth1, C J Norley, R Frayne, D A Steinman, B K Rutt.   

Abstract

Knowledge of human blood-flow waveforms is required for in vitro investigations and numerical modelling. Parameters of interest include: velocity and flow waveform shapes, inter- and intra-subject variability and frequency content. We characterized the blood-velocity waveforms in the left and right common carotid arteries (CCAs) of 17 normal volunteers (24 to 34 years), analysing 3560 cardiac cycles in total. Instantaneous peak-velocity (Vpeak) measurements were obtained using pulsed-Doppler ultrasound with simultaneous collection of ECG data. An archetypal Vpeak waveform was created using velocity and timing parameters at waveform feature points. We report the following timing (post-R-wave) and peak-velocity parameters: cardiac interbeat interval (T(RR)) = 0.917 s (intra-subject standard deviation = +/- 0.045 s); cycle-averaged peak-velocity (V(CYC)) = 38.8 cm s(-1) (+/-1.5 cm s(-1)); maximum systolic Vpeak = 108.2 cm s(-1) (+/-3.8 cm s(-1)) at 0.152 s (+/-0.008 s); dicrotic notch Vpeak = 19.4 cm s(-1) (+/-2.9 cm s(-1)) at 0.398 s (+/-0.007 s). Frequency components below 12 Hz constituted 95% of the amplitude spectrum. Flow waveforms were computed from Vpeak by analytical solution of Womersley flow conditions (derived mean flow = 6.0 ml s(-1)). We propose that realistic, pseudo-random flow waveform sequences can be generated for experimental studies by varying, from cycle to cycle, only T(RR) and V(CYC) of a single archetypal waveform.

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Year:  1999        PMID: 10475577     DOI: 10.1088/0967-3334/20/3/301

Source DB:  PubMed          Journal:  Physiol Meas        ISSN: 0967-3334            Impact factor:   2.833


  41 in total

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5.  Dampening of blood-flow pulsatility along the carotid siphon: does form follow function?

Authors:  T Schubert; F Santini; A F Stalder; J Bock; S Meckel; L Bonati; M Markl; S Wetzel
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7.  Immersive visualization for enhanced computational fluid dynamics analysis.

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8.  Evaluation of distal turbulence intensity for the detection of both plaque ulceration and stenosis grade in the carotid bifurcation using clinical Doppler ultrasound.

Authors:  Emily Y Wong; Hristo N Nikolov; Richard N Rankin; David W Holdsworth; Tamie L Poepping
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9.  Characterization of volumetric flow rate waveforms at the carotid bifurcations of older adults.

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Journal:  Physiol Meas       Date:  2010-01-20       Impact factor: 2.833

Review 10.  Generic and patient-specific models of the arterial tree.

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Journal:  J Clin Monit Comput       Date:  2012-07-29       Impact factor: 2.502

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