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1 in selected patients (low ejection fraction, intraventricular conduction delay).
2 ents with poor left ventricular function and intraventricular conduction delay.
3  for an ICD who also have symptomatic HF and intraventricular conduction delay.
4  therapy for patients with heart failure and intraventricular conduction delay.
5 s in patients with heart failure who have an intraventricular conduction delay.
6 have moderate-to-severe heart failure and an intraventricular conduction delay.
7 tile function in heart failure patients with intraventricular conduction delay.
8 ents with advanced chronic heart failure and intraventricular conduction delays.
9  in about 70% of HF patients with left-sided intraventricular conduction delay, a fact that would exp
10  of death in these patients who also have an intraventricular conduction delay and are treated with C
11 for patients with advanced heart failure and intraventricular conduction delays and ventricular dyssy
12 atients with symptomatic heart failure (HF), intraventricular conduction delay, and malignant ventric
13 n resulting from left bundle-branch block or intraventricular conduction delay but not right bundle-b
14 ong patients with advanced heart failure and intraventricular conduction delays, but the cost effecti
15 tients with dilated cardiomyopathy (DCM) and intraventricular conduction delay by resynchronizing con
16 zed that the magnitude and location of basal intraventricular conduction delay critically influences
17  (LBBB; including right bundle branch block, intraventricular conduction delay) did not have clinical
18  bundle branch block (HR=1.01, P=0.975), and intraventricular conduction delay (HR=1.31, P=0.172).
19 ns who also have CHF, LV dysfunction, and an intraventricular conduction delay, ICD therapy is less c
20                                   Left-sided intraventricular conduction delay is associated with mor
21                  Dilated cardiomyopathy with intraventricular conduction delay is associated with sig
22 block (RBBB) in 48 patients, and nonspecific intraventricular conduction delay (IVCD) was present in
23 ure patients with narrow QRS and nonspecific intraventricular conduction delay (NICD) display a relat
24    Over half the affected cohort (28/52) had intraventricular conduction delay, or incomplete right b
25 icular ejection fraction of 35% or less, and intraventricular conduction delays (QRS > 120 ms), altho
26 c imaging could be a more specific marker of intraventricular conduction delay rather than the surrog
27 en applied to children and young adults with intraventricular conduction delay, such as bundle branch
28 of patients with left bundle branch block or intraventricular conduction delay treated with cardiac r
29 with advanced chronic heart failure (HF) and intraventricular conduction delay treated with optimal p
30               Thirteen patients with DCM and intraventricular conduction delay underwent multiple gat
31 ficant factors, left bundle-branch block and intraventricular conduction delay were associated with a

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