• Title/Summary/Keyword: pulsed doppler ultrasound

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Construction of Ultrasound Pulsed Doppler Velocimeter (펄스 초음파 도플러 속도계의 제작에 관한 연구)

  • 현석봉;김수용;이재수
    • Progress in Medical Physics
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    • v.5 no.1
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    • pp.25-39
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    • 1994
  • To measure the velocity of heart wall and local flow transctaneously in blood vessels, we have developed a single channel 3.1 MHz pulsed ultrasonic Doppler velocity meter. Ultrasound pluse width and repetition frequency (PRF) used in the velocity meter is 1 ${\mu}$sec 6kHz reapectively, and the Doppler shift of the backscattered echo signal is sensed in a phase detector by coherent demodulation method. From the output of the phase detector, the Doppler signal corresponding to the mean velocity of acoustic wave scatterers over a small region is obtained by using a range gate, sample holder and band-pass filter. Mean frequency of Doppler signal is estimated by zero-crossing counter and the instantaneous velocity of scatters is displayed as a function of time. It is possible to estimate velocity profile, volume flow and flow acceleration of vessels in man if the number of channels and range resolution in increased.

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Portal blood flow measurement by doppler ultrasonography in dogs (도플러 초음파를 이용한 개의 간혈액량의 측정)

  • Sung, Jai-ki;Lee, Young-won;Lee, Hee-chon;An, Yong-ju;Choi, Ho-jung;Yoon, Jung-hee
    • Korean Journal of Veterinary Research
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    • v.37 no.3
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    • pp.661-668
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    • 1997
  • Portal blood flow was measured with pulsed doppler ultrasound in thirty normal dogs. In normal dogs, the average portal blood flow velocity was $17.03{\pm}1.75cm/sec$ and the average portal blood flow was $41.59{\pm}10.10ml/min/kg$. The incident angle between the doppler beam and the portal vein averaged $65^{\circ}$. The average portal vein sectional area was $0.41{\pm}0.14cm^2$. The Congestion index was $0.0245{\pm}0.0081cm{\cdot}sec$. Conclusively, the spectral doppler ultrasonography was quick, non-invasive and simple diagnostic method in circulatory disorders of liver.

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A New Mean Frequency Extension Method in Doppler System (초음파 도플러 시스템에서 새로운 평균 주파수 확장 방법)

  • 백광렬
    • Journal of Biomedical Engineering Research
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    • v.16 no.2
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    • pp.183-190
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    • 1995
  • The use of ultrasound pulsed Doppler systems has become increasingly popular due to the advantages of easy measurements of blood velocity, volume blood blow, and irregularities of the circulatory system. However, the 2-D Doppler systems have several problems, such as range ambiguity, low signal to noise ratio, and slow frame rate. The mean frequency aliasing problem originating from the pulse repetition frequency is one of major limitations in pulsed Doppler systems. A conventional approach to resolve this problem is tracking the mean frequency close to and beyond the Nyquist frequency along the temporal axis. In this paper, a new concept of tracking the mean frequency along the spatial axis is proposed. The proposed technique is fault tolerant by nature and more suitable for multi gate and 2-D Doppler system than conventional methods.

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Ultrasonic Measurement of Tissue Motion for the Diagnosis of Disease

  • Beach Kirk W.
    • International Journal of Vascular Biomedical Engineering
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    • v.1 no.1
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    • pp.3-12
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    • 2003
  • Ultrasonic pulsed Doppler velocimetry has become a standard international method of classifying carotid disease. Because the measured angle adjusted velocity increases as the Doppler angle increases, examinations should be performed at a convenient standard Doppler examination angle. An angle of 60 degrees is achievable throughout most examinations. Multiple Doppler viewing angles allow the acquisition of velocity vectors during the cardiac cycle, revealing the complex velocity patterns. Ultrasonic velocimetry (whether Doppler or time domain) is based on changes in the phase of the ultrasound echo. Other examinations can be done based on the echo phase. Slow motions of organs such as the brain can be used to monitor changes in edema. Measurements of tissue strain due to the pulsatile filling of the arterioles. This plethysmographic imaging method can display differences in tissue perfusion because of different tissue types and changes in autonomic activity.

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A Study on the Stationary Canceler in the Ultrasonic Pulse Doppler System (초음파 펄스 도플러 시스템의 Stationary Conceler에 대한 연구)

  • 김영길
    • Journal of Biomedical Engineering Research
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    • v.6 no.1
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    • pp.47-54
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    • 1985
  • In this paper, clutter in ultrasound pulsed Doppler system is analyzed mathematically. And stationary canceler which reduce the clutter is designed. The operating characteristics of the stationary canceler is investigated in body (in vivo) by audio signal and spectrum analyzer.

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A Study on a Multichannel(128) Ultrasound Pulsed Doppler System with Serial Data Processing for Sensing the Blood Flow (혈류 진단을 위하여 직렬데이터 처리를 하는 다중(128) 채널 초음파 펄스 도플러 시스템에 관한 연구)

  • Kim, Young-Kil
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.23 no.3
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    • pp.389-396
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    • 1986
  • A pulsed ultrasonic doppler flowmeter for mesurements of velocity profils in man is described. The device projects a beam of ultrasound in burst of 570 ns duration at 3.5 MHz. The back-scattered signals are processed to produce a signal oxrresponding to the mean velocity over a small region of the flowing stream. The observation range of 112mm is divided into 128 depth channels. The size of this sample volume determines the flowmeter sensitivity and accuracy. The device uses a quadrature detector to detect the direction of the moving target(hemoglobin). The main feature of the novel instrumnet is its simple hardware structure due to sequential signal processing.

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Audio Processing Algorithm Using Base Line Shift Method in Pulsed Doppler Systems (PW 도플러 시스템에서 Base Line 이동 기법을 이용한 오디오 신호 처리 방법)

  • 김기덕;송태경
    • Journal of Biomedical Engineering Research
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    • v.20 no.3
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    • pp.275-281
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    • 1999
  • Conventional PW Doppler systems suffer from the ambiguity of measured blood velocities due to the spectrum aliasing when the corresponding Doppler frequencies are greater than the Nyquist frequency. Base-line shift is a customary method for dealiasing the Doppler spectrums. I lowever, Doppler audio signals still remain unchanged even when the base-line shift method is applied. This paper de scribes an method for dealiasing both the Doppler spectra and audio signals by using sampling rate expansion, frequency shifting, and filtering poerations. For undirectional flows, the method can increase the maximum detectable Doppler frequency from the Nyquist limit of one-half of the Pulse Repetition Frequency(PRF) to the PRF. Experiments with real data have been performed to verify the proposed method.

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A study on the pulsatile flow characteristics of Newtonian and non-Newtonian fluids in the bifurcated tubes (분기관내 뉴턴유체와 혈액의 맥동유동특성에 관한 연구)

  • Seo, Sang-Ho
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.20 no.11
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    • pp.3607-3619
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    • 1996
  • Experimental and numerical studies for three-dimensional pulsatile flows are conducted to investigate the flow characteristics in the bifurcated tubes. Velocity measurements in experimental study were made by both Pulsed Doppler Ultrasound(PDU) machine and Laser Doppler Anemometer(LDA) system. Glycerin is used for experimental study. Experimental results are used to verify the results of the numerical simulation. Flow characteristics of Newtonian fluid and blood in the bifurcated tubes under the steady and pulsatlie flows are numerically investigated. Finite volume method is employed for three-dimensional numerical simulations. Blood is considered as a non-Newtonian fluid and the constitutive equation of blood is used for the numerical analysis. Numerical analyses are focused on the flow patterns for various branch angles ranging from 30.deg. to 90.deg. and diameter ratios such as 1.0, 0.8, and 0.6. Pulsatile flow characteristics of blood are compared with those of Newtonian fluid. Parameter effects on axial velocity, pressure and wall shear stress distribution along the bifurcated tubes are discussed in terms of the branch angle, diameter ratio, and Reynolds number.

A Study on the Fetal Umbilical Artery Doppler Blood Flow Velocity Waveforms in Normal Pregnancy (정상 임신에서 Doppler 초음파를 이용한 제대동맥 혈류속도 파형에 관한 연구)

  • Bae, Cheol-Seong;Kwun, Gee-Jin;Lee, Doo-Jin;Park, Yoon-Kee;Lee, Sung-Ho;Cho, Kil-Ho
    • Journal of Yeungnam Medical Science
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    • v.8 no.1
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    • pp.63-71
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    • 1991
  • Noninvasive techniques for antenatal detection of the fetal development and well-being such as biophysical profile, non-stress and stress test remain major challenges in modem obstetric practice. To obtain and analyze umbilical artery velocity waveform by pulsed-wave doppler ultrasound, a total of 160 determinations were carried out on 157 normal pregnant women between 16th to 41st week gestation. The ratio of peak systolic to end-diastolic flow velocity(S/D ratio), pulsatility index and resistance index were measured as indices of the resistance in feto-placental circulation. The results were as follows : As gestation advances, the, mean values for peak systolic and end-diastolic velocities raised progressively. As gestation advances, the mean values for the S/D ratio declined progressively, exhibiting high diastolic flow velocity caused by low resistance. Pulsatility index, and resistance index were also declined progressively, as gestation advances. The analysis of umbilical artery blood flow velocity waveforms provides a new noninvasive technique to evaluate fetal development and well-being, and may be expected a reliable method for assessment of fetal life.

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