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1 t placement of an ameroid constrictor on the left circumflex artery.
2 er, an ameroid constrictor was placed on the left circumflex artery.
3  was found between right coronary artery and left circumflex artery.
4 instrumented dogs by partially occluding the left circumflex artery.
5 t anterior descending artery, and 26% in the left circumflex artery.
6 ement of an ameroid constrictor around swine left circumflex artery.
7 % for right coronary artery, and 30+/-9% for left circumflex artery.
8 oronary artery, and 72% (kappa=0.40) for the left circumflex artery.
9  for right coronary artery, and 30+/-12% for left circumflex artery.
10 t anterior descending coronary artery [20%], left circumflex artery [12%] and right coronary artery [
11 itory (left anterior descending artery [LAD] left circumflex artery and posterior descending artery [
12 erior descending artery, 90% and 70% for the left circumflex artery, and 74% and 79% for the right co
13 lium chloride staining demonstrated that the left circumflex artery, and not the LAD, group had atria
14 nary collateral channels were induced in the left circumflex artery bed of 12 chronically instrumente
15 rescent microsphere-derived MBF ratio in LAD/left circumflex artery beds demonstrated close correlati
16                                              Left circumflex artery crossed between CS and MA in 80%
17                                          The left circumflex artery group demonstrated the following
18 anterior descending artery (LAD) (n = 27) or left circumflex artery (LCx) (n = 29) were evaluated wit
19                               Absence of the left circumflex artery (LCX) is an extremely rare congen
20 detection of right coronary artery (RCA) and left circumflex artery (LCX) lesions (0.84 +/- 0.08 vs.
21  In the 6 critical-stenosis dogs, the LAD-to-left circumflex artery (LCx) microsphere flow ratio was
22           MI was induced by occlusion of the left circumflex artery (LCX) or left anterior descending
23 ries: left anterior descending artery (LAD), left circumflex artery (LCX), and right coronary artery
24           Perfusion measurements in the LAD, left circumflex artery (LCx), right coronary artery, and
25 .2% +/- 1%), 123I-IPPA defect magnitude (LAD/left circumflex artery [LCX] count ratios) decreased fro
26 illation (VF) was evaluated using a 2-minute left circumflex artery occlusion during the last minute
27 ctive CFI differences during either IMA with left circumflex artery occlusion were inconsistently pos
28 emia, followed by left anterior ascending or left circumflex artery occlusion.
29 right coronary artery occlusion, and 12% had left circumflex artery occlusion.
30 A occlusions but not during contralateral or left circumflex artery occlusions.
31 1; left anterior descending artery, P=0.003; left circumflex artery, P=0.001).
32  1 month after the surgery, occlusion of the left circumflex artery regularly produced ventricular fi
33 nary artery, 10 right coronary artery, and 5 left circumflex artery) retrieved by using directional c
34                  In six open-chest dogs with left circumflex artery stenosis, radiolabeled microspher
35                    In the right coronary and left circumflex artery territories, these associations w
36  myocardial flow reserve were reduced in the left circumflex artery territory (both P<0.001), and hib
37 placement of an ameroid constrictor into the left circumflex artery to induce chronic myocardial isch
38 ronary artery and the left main and proximal left circumflex arteries was performed with BRSs.
39 ients selected for coronary angiography, the left circumflex artery was the culprit vessel in 34.6% o
40 left anterior descending arteries and 86% of left circumflex arteries, whereas calcified nodules with

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