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1 gh the LVOT were recorded using conventional pulsed Doppler.
2 t of 2-dimensional echocardiography (1970s), pulsed Doppler (1970s), and color Doppler (1980s) introd
3 4 epididymides, blood flow was detected with pulsed Doppler and color Doppler imaging 100% of the tim
4           By use of calibrated tonometry and pulsed Doppler, arterial stiffness and pulsatile hemodyn
5                     In addition, we measured pulsed-Doppler blood velocity across the atrioventricula
6 tion by transthoracic 2D-targeted M-mode and pulsed Doppler echocardiography in transgenic (TG) mice
7                                              Pulsed Doppler echocardiography of mitral and pulmonary
8         We used M-mode, two-dimensional, and pulsed Doppler echocardiography to study 11 patients wit
9 l and pulmonary venous flow were recorded by pulsed Doppler echocardiography.
10 ary vein flow velocities were measured using pulsed Doppler echocardiography.
11 nflow velocity was recorded by transthoracic pulsed Doppler examination immediately after restoration
12  (350-450 g) were chronically implanted with pulsed Doppler flow probes (renal and mesenteric arterie
13 posterior wall delay >/=130 milliseconds, or pulsed Doppler interventricular mechanical delay >/=40 m
14                                      Because pulsed Doppler is cumbersome and often inappropriate for
15 -mode septal to posterior wall motion delay, pulsed Doppler measures of left ventricular ejection in
16 se obtained electromagnetically, whereas the pulsed Doppler method overestimated these reference data
17                                          The pulsed Doppler method using the velocity-time integral w
18 d fraction were assessed by the quantitative pulsed Doppler method.
19  from expiration to inspiration (%E) between pulsed Doppler mitral inflow (MV) and pulmonary venous f
20     With the use of calibrated tonometry and pulsed Doppler, pulsatile hemodynamics were assessed bef
21 ts of LVFP were obtained simultaneously with pulsed Doppler recordings of mitral and pulmonary venous
22 ay-scale imaging, color Doppler imaging, and pulsed Doppler spectral analysis of the head, body, and
23  flow determination (cardiac output) using a pulsed Doppler system, arterial pressure measurement and
24 onull system and flow velocity with a 20-MHz pulsed-Doppler system in stage 24 chick embryos (n = 38)
25 on was compared with diastolic indices using pulsed Doppler, TDE and CMM echocardiography.
26  tract and mitral annulus were calculated by pulsed-Doppler technique to determine regurgitant volume
27               Doppler color flow mapping and pulsed Doppler techniques were used to obtain hemodynami
28                    We measured 148 digitized pulsed Doppler tracings recorded in the left ventricular
29      Third, to compare ACM with the standard pulsed Doppler-two-dimensional echocardiographic (PD-2D)
30 effect of the temporal tap was sought in the pulsed Doppler ultrasound waveforms of the ECA, common c
31 elocity in the middle cerebral artery (CFV) (pulsed Doppler ultrasound) in 17 healthy awake subjects
32 did not result in focal brain heating during pulsed Doppler US (P > .6).
33 t associated with focal brain heating during pulsed Doppler US.
34         Two-dimensional echocardiography and pulsed Doppler were used to measure left ventricular mas

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