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1 iae that progressed to cardiac tamponade and constrictive pericarditis.
2 ent treatments for pericardial effusions and constrictive pericarditis.
3 amponade, but also to suggest a diagnosis of constrictive pericarditis.
4 imilar to that observed in clinical cases of constrictive pericarditis.
5        It represents a novel animal model of constrictive pericarditis.
6 onsidered an essential diagnostic feature of constrictive pericarditis.
7 estrictive cardiomyopathy and preserved with constrictive pericarditis.
8 ication is a common finding in patients with constrictive pericarditis.
9 formed promptly in symptomatic patients with constrictive pericarditis.
10 ose of 20 patients who had surgically proved constrictive pericarditis.
11 velocity, which is not seen in patients with constrictive pericarditis.
12  are less restrictive compared with those in constrictive pericarditis.
13 nd should be a valuable adjunct in assessing constrictive pericarditis.
14 eristic Doppler echocardiographic feature in constrictive pericarditis.
15  respiration in relation to the diagnosis of constrictive pericarditis.
16 ion could assist in noninvasively diagnosing constrictive pericarditis.
17 c tamponade requiring pericardiocentesis, or constrictive pericarditis.
18 dependently associated with the diagnosis of constrictive pericarditis.
19 c tamponade requiring pericardiocentesis, or constrictive pericarditis.
20 variables were independently associated with constrictive pericarditis: (1) ventricular septal shift,
21 ve pulmonary disease without an overlap with constrictive pericarditis (39.5+/-18.8 cm/s vs. 4.2+/-3.
22 h significant reductions in the incidence of constrictive pericarditis (4.4% vs. 7.8%; hazard ratio,
23 dinal axis expansion (Ea) in 8 patients with constrictive pericarditis, 7 patients with restriction a
24 mal in a substantial number of patients with constrictive pericarditis after pericardiectomy.
25 ed in 18% of patients with surgically proven constrictive pericarditis, although the histopathologica
26 rmed in 5 patients with surgically confirmed constrictive pericarditis and 12 patients (control subje
27 d echocardiographic data of 50 patients with constrictive pericarditis and 44 with restrictive cardio
28                                              Constrictive pericarditis and chronic obstructive pulmon
29 elocity was 13% +/- 6% and -8% +/- 7% in the constrictive pericarditis and control groups, respective
30 ction after pericardiectomy in patients with constrictive pericarditis and correlated postoperative D
31 city duration are increased in patients with constrictive pericarditis and may be helpful in diagnosi
32 y data sets derived from patients with known constrictive pericarditis and restrictive cardiomyopathy
33 ides a clinically useful distinction between constrictive pericarditis and restrictive cardiomyopathy
34 des an important opportunity to evaluate for constrictive pericarditis, and definite diagnostic crite
35 elocity is the main diagnostic criterion for constrictive pericarditis by Doppler echocardiography, i
36 ted to be useful for differentiating chronic constrictive pericarditis (CP) and restrictive cardiomyo
37 venous flow (PV) velocities in patients with constrictive pericarditis (CP) and to describe the influ
38                           Differentiation of constrictive pericarditis (CP) from restrictive cardiomy
39  peptide (BNP) measurements to differentiate constrictive pericarditis (CP) from restrictive cardiomy
40                     The clinical spectrum of constrictive pericarditis (CP) has been affected by a ch
41                                              Constrictive pericarditis (CP) is a disabling disease, a
42 between restrictive cardiomyopathy (RCM) and constrictive pericarditis (CP) is challenging and, despi
43 atheterization criteria for the diagnosis of constrictive pericarditis (CP) rely on equalization of i
44 study was to compare myocardial mechanics of constrictive pericarditis (CP) with restrictive cardiomy
45                                           In constrictive pericarditis (CP), E' is not reduced, despi
46  to determine the association of etiology of constrictive pericarditis (CP), pericardial calcificatio
47 theterization criterion for the diagnosis of constrictive pericarditis (CP).
48  the causes and natural history of transient constrictive pericarditis (CP).
49 mited cutaneous scleroderma in whom calcific constrictive pericarditis developed.
50 icacy of pericardiectomy, some patients with constrictive pericarditis fail to improve postoperativel
51 measuring PVF have included: differentiating constrictive pericarditis from restriction, estimation o
52 classifier was evaluated for differentiating constrictive pericarditis from restrictive cardiomyopath
53 rly diastolic velocity to help differentiate constrictive pericarditis from restrictive cardiomyopath
54 ular expansion velocities in differentiating constrictive pericarditis from restrictive cardiomyopath
55   Echocardiography allows differentiation of constrictive pericarditis from restrictive myocardial di
56 e chronic obstructive pulmonary disease from constrictive pericarditis in patients with a respiratory
57 tion on a plain radiograph strongly suggests constrictive pericarditis in patients with heart failure
58                                              Constrictive pericarditis is a potentially reversible ca
59                            However, calcific constrictive pericarditis is considered rare in the Unit
60                    A physiologic hallmark of constrictive pericarditis is enhanced ventricular interd
61                                              Constrictive pericarditis is the result of a spectrum of
62  (n = 162), peritoneal disease (n = 10), and constrictive pericarditis (n = 2).
63           Patients with surgically confirmed constrictive pericarditis (n=130) at Mayo Clinic (2008-2
64  phenomenon that has been labeled "transient constrictive pericarditis." No large studies have examin
65 or absent during the evaluation of suspected constrictive pericarditis, repeat Doppler recording of m
66                                              Constrictive pericarditis represents a serious hemodynam
67  inflammation and may identify patients with constrictive pericarditis that will improve with anti-in
68                             In patients with constrictive pericarditis treated with anti-inflammatory
69 because of cardiovascular complications (one constrictive pericarditis, two right heart failures with
70 om 1985 to 1995, a total of 58 patients with constrictive pericarditis underwent pericardiectomy and
71                                              Constrictive pericarditis was confirmed by the surgical
72 ease or severe tricuspid regurgitation after constrictive pericarditis was considered but ruled out.
73 m onset to peak inspiration in patients with constrictive pericarditis were significantly different f
74     In 12 patients with surgically confirmed constrictive pericarditis who had < 25% respiratory vari
75   We identified 41 consecutive patients with constrictive pericarditis who had a cardiovascular magne
76 measured at 26 locations in 11 patients with constrictive pericarditis who underwent intraoperative t

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