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1  porcine coronary ECs were isolated from the left circumflex coronary artery.
2 l regurgitation produced by occlusion of the left circumflex coronary artery.
3 n grafted to a stenosed branch of the native left circumflex coronary artery.
4 lly and an inflatable cuff placed around the left circumflex coronary artery.
5 c injury (250 microA for 180 minutes) in the left circumflex coronary artery.
6 t of an ameroid occluder around the proximal left circumflex coronary artery.
7 rolytic injury of the intimal surface of the left circumflex coronary artery.
8 id implantation or repeated occlusion of the left circumflex coronary artery.
9 n injury of the left anterior descending and left circumflex coronary arteries.
10 rior descending coronary artery, 96% for the left circumflex coronary artery (22/23), and 100% for th
11 gs underwent operative placement of proximal left circumflex coronary artery ameroid constrictors.
12 cending coronary artery, 44% and 90% for the left circumflex coronary artery and 75% and 77% for the
13 ubjected to ameroid-induced occlusion of the left circumflex coronary artery and randomized to bFGF (
14 ubjected to ameroid-induced occlusion of the left circumflex coronary artery and randomized to bFGF 1
15 ulse Doppler flow probe implanted around the left circumflex coronary artery and with catheters in le
16  vena cava, a flow probe around the proximal left circumflex coronary artery, and catheters in the le
17 on in either the left anterior descending or left circumflex coronary artery, and the S-VF DFT was de
18 es along the left anterior descending and/or left circumflex coronary artery by intracoronary ultraso
19 retch of normal left anterior descending and left circumflex coronary arteries dose dependently reduc
20 n was provoked by transient occlusion of the left circumflex coronary artery during submaximal exerci
21                     A conscious dog model of left circumflex coronary artery electrolytic injury was
22 gs (left anterior descending coronary artery/left circumflex coronary artery flow 0.53+/-0.16 in the
23 n either the left anterior descending or the left circumflex coronary artery in 18 dogs.
24 ients, right coronary artery [RCA] in 14 and left circumflex coronary artery in 2).
25 sed at a rate of 2 ng/kg per minute into the left circumflex coronary artery in normal dogs (n = 5) a
26 s with an ameroid constrictor applied to the left circumflex coronary artery, in each pig, peak beta-
27  three segments of LAD and three segments of left circumflex coronary artery) increased by 19.3% (3.2
28 680 were then separately infused to maximize left circumflex coronary artery (LCx) flow velocity.
29       A hydraulic occluder was placed in the left circumflex coronary artery (LCX) in 10 dogs.
30 oronary artery (RCA) in six subjects and the left circumflex coronary artery (LCX) in one patient.
31                                     A 90-min left circumflex coronary artery (LCx) occlusion was foll
32                                 The proximal left circumflex coronary artery (LCx) of female Yucatan
33 rogressive ameroid occlusion of the proximal left circumflex coronary artery (LCx); after 2 months, a
34 +/- 0.01; P < 0.01) defect count ratios (LAD/left circumflex coronary artery [LCx]) differentiated be
35  artery [LAD]: n = 13, r = 0.89, p < 0.0001; left circumflex coronary artery [LCx]: n = 11, r = 0.7,
36 e from the infarction zone eight weeks after left circumflex coronary artery ligation in pigs, demons
37        Myocardial infarction was produced by left circumflex coronary artery ligation in swine.
38 protein subunits in pig hearts with proximal left circumflex coronary artery ligation.
39  (open chest) before and continuously during left circumflex coronary artery occlusion to induce acut
40 ht of early passage autologous MSCs into the left circumflex coronary artery of anaesthetised dogs.
41 gher occurrence of TLR for restenosis of the left circumflex coronary artery ostium (LCX-ISR) (HR, 2.
42 chest dogs with left anterior descending and left circumflex coronary artery stenoses that reduced hy
43 erritories: the left anterior descending and left circumflex coronary artery territories and the righ
44 left anterior descending coronary artery and left circumflex coronary artery territories, whereas AC
45                   Electrolytic injury of the left circumflex coronary artery to induce thrombotic occ
46 A) and coronary sinus (CS) as well as CS and left circumflex coronary artery using cardiac computed t
47 this hypothesis, a 2-minute occlusion of the left circumflex coronary artery was made during the last
48 dogs, either the left anterior descending or left circumflex coronary artery was occluded for 90 minu
49 two Yorkshire pigs with chronically occluded left circumflex coronary arteries were randomly assigned
50               Segments of thoracic aorta and left circumflex coronary artery were obtained from 3 gro

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