Journal of Ultrasound in Medicine · 2000 · 21 citations · 12 references
Medical UltrasoundEngineeringShear RatesShear Rate EstimatesThrombosisStrokeNeurologyCardiologyAtherosclerosisBlood Flow MeasurementRadiologyCardiovascular ImagingVascular ImageMedical ImagingUltrasonicsVascular BiologyUltrasoundCerebral Blood FlowCardiovascular DiseaseShear Rate EstimationMean Shear RateArterial DiseaseMedicine
Wall shear stress is a factor in the development of atherogenesis, thrombus formation, and embolization, but its existence is very difficult to determine with ultrasonography. Instead, we estimated shear rates using a clinical ultrasound scanner and compared results from vessels with and without stenoses. Velocity profiles were obtained from color M-mode images on a P700 scanner. Maximum shear rates were calculated off-line as the maximum velocity gradients. In vitro, studies were performed on a flow phantom with a vessel containing a 50% stenosis. Shear rates within the stenosis were significantly higher than those obtained outside the stenosis (P < 0.00001) and varied more than the peak velocities. In vivo, the internal carotid artery of 10 volunteers and 13 patients (with stenoses) was studied. The mean shear rate was 414 s(-1) +/- 154.5 s(-1) in normal vessels and 687 s(-1) +/- 263.5 s(-1) in stenotic vessels (P = 0.00017). In conclusion, shear rate estimates can be obtained with a clinical ultrasound scanner from color M-mode images. Shear rates estimated in vessels with stenoses are significantly higher than those obtained in normal vessels in vitro as well as in vivo.
12
Arnold P.G. Hoeks, Theo Arts, Peter J. Brands et al. · Ultrasound in Medicine & Biology · 1993 · 103 citations
Radar, Rf Cross Correlation, Doppler Autocorrelation Technique +9