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1 se as tools to improve myocardial assessment echocardiographically.
2 simple mitral valve prolapse (MVP) diagnosed echocardiographically.
3 rtery systolic pressure >/=60 mm Hg detected echocardiographically.
4 efit but consumes specialist time to conduct echocardiographically.
5                         Hearts were examined echocardiographically and processed for histological and
6 ly), or both; cardiac function was evaluated echocardiographically, and fibrosis, capillary density,
7                Cardiac function was assessed echocardiographically, and neovascularization was assess
8 additional prognostic information beyond the echocardiographically assessed severity of periAR and in
9 tic information that is complementary to the echocardiographically assessed severity of periAR.
10  LV volume should be the preferred method of echocardiographically assessing LV remodeling.
11 y was to evaluate the utility of telemedical echocardiographically assisted neonatal cardiovascular e
12 normal control subjects and 22 patients with echocardiographically characterized chronic mitral regur
13  of a previously reported and clinically and echocardiographically characterized random sample (n = 1
14 eshold value in substudy-II, 17 thrombi were echocardiographically classified as fresh (=SR >/=1 s(-1
15 with systolic (ejection fraction 35+/-9%) or echocardiographically confirmed diastolic heart failure
16 he mitral valve commissures, as demonstrated echocardiographically, could predict outcome and to comp
17 cardial biopsy samples were obtained at each echocardiographically defined stage (LV hypertrophy, LV
18              Conventional and tissue Doppler echocardiographically derived myocardial velocity gradie
19               Respiratory changes in Doppler echocardiographically derived tricuspid regurgitation pe
20 ht to examine the value of analyzing Doppler echocardiographically derived tricuspid regurgitation si
21  detected noninvasively by analyzing Doppler echocardiographically derived tricuspid regurgitation si
22                                              Echocardiographically determined conduit flow expressed
23         This study examined the relations of echocardiographically determined left ventricular (LV) m
24 We sought to compare the predictive value of echocardiographically determined left ventricular hypert
25  The ACE genotype showed no association with echocardiographically determined left ventricular mass,
26                                              Echocardiographically determined LV dimensions and mass
27                 We examined the relations of echocardiographically determined LV mass to demographic
28 ular disease, a lower Hct is associated with echocardiographically determined LVH in men and a small
29                                              Echocardiographically determined PVR was present in 50 v
30      Longitudinal follow-up of children with echocardiographically diagnosed subclinical RHD is neede
31                             Individuals with echocardiographically documented DCM were defined as aff
32   In addition, left ventricular volumes were echocardiographically estimated at peak inspiration and
33 iated with active digital ischemia (OR 9.4), echocardiographically evident PAH (OR 4.8), and mortalit
34 c valve degeneration at diagnosis was scored echocardiographically for calcification, thickening, and
35 ft or a pulmonary autograft were followed up echocardiographically for up to 4 years and had their ao
36 s (age 67 +/- 12 years) with MR-FL diagnosed echocardiographically from 1980 through 1994.
37                       Of the 960 consecutive echocardiographically guided pericardiocenteses performe
38  determine the safety and efficacy of rescue echocardiographically guided pericardiocentesis as a pri
39                   The safety and efficacy of echocardiographically guided pericardiocentesis in this
40                                              Echocardiographically guided pericardiocentesis was safe
41  dilation and left ventricular mass measured echocardiographically in 6 of 10 LVAD-supported patients
42                                              Echocardiographically, LV function was improved in G-CSF
43                                       M-mode echocardiographically measured LV dimensions and the der
44                                              Echocardiographically measured myocardial function, incl
45 acturer-provided charts (M PPM); and (3) the echocardiographically measured, body surface area-indexe
46 y of Fallot and similar lesions were studied echocardiographically (n=23) and by cardiac catheterizat
47                                   Among 3790 echocardiographically normal subjects, PASP was associat
48 fixed empirical AV delay (120 milliseconds), echocardiographically optimized AV delay, or AV delay op
49 cose utilization, but heart weight, measured echocardiographically or as wet mass and normalized to t
50          Valvular endocarditis was diagnosed echocardiographically or histologically in eight dogs, t
51  10, 40-68 years) subjects and patients with echocardiographically proved mild, moderate, or severe d
52     Left ventricular volumes were determined echocardiographically; right ventricular volumes were de
53                             In patients with echocardiographically suspected PFE who do not undergo s
54  of patients with surgically removed PFE and echocardiographically suspected, but unoperated, PFE.
55                                              Echocardiographically, the mean size of the CPFs was 9+/
56 d biplane videofluoroscopy before and during echocardiographically verified acute ischemic mitral reg

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