1.Comparison of Pulmonary and Systemic Blood Flow and Ratio of Pulmonary Blood Flow to Systemic Blood Flow Obtained by Pulsed Wave Doppler Echocardiography and Fick Method.
Sung Gy JIN ; Myeng Hee CHA ; Kyeng Sook CHO ; Doo Sung MOON
Journal of the Korean Pediatric Society 1987;30(9):982-989
No abstract available.
Echocardiography, Doppler*
2.Evaluation of the Left Atrial Size and Function in Addition to Analysis of the Mitral and Pulmonary Venous Flow Velocity in the Estimation of Left Ventricular Filling Pressures.
Hyeon Suk LEE ; Nam Kyu BAK ; Dae Soo KIM ; Young Joo CHIN ; Gook Tae PARK ; Dong Woon KIM ; Myeong Chan CHO
Korean Circulation Journal 1996;26(2):533-540
BACKGROUND: Mitral and pulmonary venous(PV) flow velocity variables are being used for the indirect evaluation of left ventricular(LV) diastolic function. However, these flow velocities are influenced by age, loading conditions and other factors. This study was designed to evaluate usefulness of left atrial size and function in addition to the relation of mitral and PV flow velocity variables in the estimation of LV filling pressures. METHODS: Mitral and PV flow velocity variables. left artial size and function were assessed just before a cardiac catherization in 31 patients. According to the LV filling pressures, patients were divided into two subgroups and echocardiographic variables were compared. RESULTS: 1) LV end-diastolic pressure was related to the duration of reverse flow in the PV at atrial contraction(r=0.58) and difference in mitral and PV flow velocity duration at atrial contraction(r=0.54), and the similar findings were observed in other left ventricular filling pressures. 2) Left atrial size and volumes were greater in the subgroup of abnormal LV filling pressures(P < 0.05), but left atrial ejection fraction was not different between subgroups. CONCLUSION: In addition to variables of the mitral and PV flow velocities, left atrial size and volume may provide an additive value in the estimation of left ventricular filling pressures.
Echocardiography
;
Echocardiography, Doppler
;
Humans
3.Color doppler echocardiographic evaluation of residual ductal flow after surgical ligation.
I Seok KANG ; Hyun KWACK ; Chung Il NOH ; Jung Yun CHOI ; Yong Soo YUN
Journal of the Korean Pediatric Society 1992;35(5):602-606
No abstract available.
Echocardiography*
;
Echocardiography, Doppler, Color
;
Ligation*
4.Normal Reference Values for Doppler Echocardiography: Influences of Ageing, Gender and Ethnicity.
Journal of Cardiovascular Ultrasound 2016;24(2):112-114
No abstract available.
Echocardiography, Doppler*
;
Reference Values*
5.Study of left and right ventricular diastolic dysfunction in the hypertensive patients by pulsed doppler echocardiography.
Korean Journal of Medicine 1993;45(3):291-298
No abstract available.
Echocardiography, Doppler, Pulsed*
;
Humans
6.Reconstruction of the Transmitral Flow Rate Curve with M-Mode,2-Dimensional and Doppler Echocardiography -Validation Study-.
Dong Woon KIM ; Seung Woo PARK ; Duk Kyung KIM ; Kyu Hyung RYU ; Byung Hee OH ; Young Bae PARK ; Yun Shik CHOI ; Jung Don SEO ; Young Woo LEE
Korean Circulation Journal 1989;19(2):273-282
To validate ventricular diastolic phase parameters of reconstructed transmitral flow rate curve by M-mode, 2-dimensional and pulsed Doppler Echocardiography, these parameters were compared with same parameters by left ventriculography. The study population was 22 patients who received both coronary arteriography and echocardiographic examination. Transmitral flow rate curve and left ventricular filling volume curve were reconstructed from transmitral flow velocity curve by pulsed Doppler, mitral annulus diameter by two diameter by two dimensional and diastolic motion of both mitral leafltes by M-mode echocardiography. From left ventriculography, left ventricular filling volume curve and transmitral flow rate curve were made using area-length method by Sandler and Dodge. From trasmitral flow fraction, 1/2 diastolic time filling fraction, normalized peak filling volume, 1/3 diastolic time filling fraction, 1/2 diastolic time fraction, normalized peak early filling rate and ratio of early to late peak filling rate were measured. Correlation between same parameters derived from echocardiography and left ventriculography were observed. 1) Total diastolic filling volume:correlation coefficient r=0.47, P<0.05. 2) 1/3 diastolic time filling fraction:correlation coefficient r=0.90, P<0.001. 3) 1/2 diastolic time filling fraction:correlation coefficient r=0.80, P<0.001. 4) Normalized peak early filling rate:correlation coefficient r=0.57, P<0.01. 5) Ratio of early to late peak filling rate:correlation coefficient r=0.85, P<0.001. Therefore, left ventricular diastolic phase parameters of reconstructed transmitral flow rate curve using, M-mode, 2-dimensional and pulsed Doppler echocardiography seems to be useful for the noninvasive evaluation of the left ventricular diastolic function.
Angiography
;
Echocardiography
;
Echocardiography, Doppler*
;
Echocardiography, Doppler, Pulsed
;
Humans
7.Pulsed doppler echocardiographic analysis of pulmonary venous flow in congenital heart diseases with left-to-right shunt.
Kye Hwan SEOL ; Chang Sung SON ; Joo Won LEE ; Soon Kyum KIM ; Young Chang TOCKGO
Journal of the Korean Pediatric Society 1991;34(7):934-939
No abstract available.
Echocardiography*
;
Echocardiography, Doppler, Pulsed
;
Heart Diseases*
;
Heart*
8.A Case of Traumatic Tricuspid Insufficiency.
Bong Kwan SEO ; Se Ho CHANG ; Ki Mun JUNG ; Jong Suk LEE ; Young Chai KIM ; Young Sil HWANG ; Sun Il CHUNG
Korean Circulation Journal 1988;18(4):713-717
Traumatic tricuspid insufficiency(TI) is a relatively uncommon disorder. We experienced a case in which traumatic TI was suspected by history and the diagnosis was confirmed nonivasively by 2-D echocardiography with Doppler technique. Tricuspid valve in this case showed flail anterior leaflet during systole and Doppler echocardiography demonstrated the presence of tricuspid insufficiency.
Diagnosis
;
Echocardiography
;
Echocardiography, Doppler
;
Systole
;
Tricuspid Valve
9.Diagnostic of extremity arterial disease with color doppler ultrasound imaging.
Journal of Vietnamese Medicine 1999;232(1):6-12
Color Doppler ultrasound imaging is an explorating method no harmful, no hemorrhagic with possibility of early diagnosis and accurate evaluation of injuries on vascular system in the pathology of lower extremity arterial occlusive disease.
Echocardiography, Doppler, Color
;
Arteries
;
diagnosis
10.Transcranial Doppler in the diagnosis of anteriovenous fistula malformation
Journal of Vietnamese Medicine 1998;231(12):24-26
A large percentage of patients with cerebral arteriovenous malformation (AVM) show focal neurological signs or a history of intracranial hemorrhage. The present study used transcranial Doppler sonography to assess the clinical significance of hemodynamic disturbances in the intracranial arteries of patients with an AVM. 12 patients with untreated AVMs were examined by clinical, angiography, CT Scanning, and with transcranial Doppler sonography (blood flow velocity measurement in main intracranial arteries). A pathological increase in blood flow velocity was frequently found in AVM feeding arteries. AVM size was a poor predictor of pathological transcranial Doppler results.
Echocardiography, Doppler
;
Arteriovenous Malformations
;
diagnosis