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1 terolemic effect of the NCEP Step I diet, 13 normocholesterolemic and 13 hypercholesterolemic men age
2 zed, blinded fashion in iliac arteries of 40 normocholesterolemic and 16 hypercholesterolemic rabbits
3 lemic effect of the NCEP Step I diet in both normocholesterolemic and hypercholesterolemic men.
4 esterol and on LDL peak particle diameter in normocholesterolemic and mildly hypercholesterolemic pos
5 ificant improvements in the lipid profile in normocholesterolemic and mildly hypercholesterolemic pos
6 r components and the magnitude of effects in normocholesterolemic and mildly hypercholesterolemic sub
7 ontrolled, cross-over studies in free-living normocholesterolemic and moderately hypercholesterolemic
8 tration of L-arginine and can be mimicked in normocholesterolemic animals by administration of an NO
9 tatin attenuates ischemia and reperfusion in normocholesterolemic animals by stabilizing endothelial
10 ral territory of hypercholesterolemic versus normocholesterolemic animals.
11 intimal hyperplasia after vascular injury in normocholesterolemic animals.
12 allografted from B.10A(2R) (H-2h2) donors to normocholesterolemic C57BL/6J (H-2h) recipients and hype
13 faster progression of atherosclerosis during normocholesterolemic childhood.
14 ccelerated progression of atherosclerosis in normocholesterolemic children.
15                                       Twenty normocholesterolemic cigarette smokers and 20 matched he
16 stores endothelium-dependent vasodilation in normocholesterolemic cigarette smokers independent of ch
17 ppressive or anti-inflammatory effects under normocholesterolemic conditions and the mechanisms invol
18  atherosclerosis during childhood even under normocholesterolemic conditions.
19 .5; n=38) compared with age- and sex-matched normocholesterolemic control subjects (58+/-4.2; n=38),
20 n hypercholesterolemic patients vs. 54.5% in normocholesterolemic control subjects, p < or = 0.02).
21 6% in arginine-treated patients vs. 65.1% in normocholesterolemic control subjects, p = 0.07).
22                                Compared with normocholesterolemic control subjects, platelets from hy
23 in naive CD4(+) T-cell priming efficacy with normocholesterolemic DCs.
24 inflammatory effects of ApoA-I deficiency in normocholesterolemic mice, increasing ApoA-I can attenua
25  size, and improves neurological function in normocholesterolemic mice.
26 ed by silencing apoE expression in SMCs from normocholesterolemic mice.
27 - to 3-fold larger lesions than offspring of normocholesterolemic mothers (P<0.01), with the greatest
28 ine-treated mothers were similar to those of normocholesterolemic mothers.
29 raphy in 49 hypercholesterolemic (HC) and 31 normocholesterolemic (NC) humans.
30                              Pigs were fed a normocholesterolemic (NC) or hypercholesterolemic (HL) d
31                               METHODS AND In normocholesterolemic (NC, n=7) and hypercholesterolemic
32 e women with hypercholesterolemia but not in normocholesterolemic or midly hypercholesterolemic women
33 faster stenosis progression in the subset of normocholesterolemic patients with MetS receiving the st
34 ng electron-beam-computed tomography (CT) in normocholesterolemic pigs after 12 wk of experimental RA
35 ke may be considered part of the diet in the normocholesterolemic population.
36  LDL peak particle diameter were examined in normocholesterolemic, premenopausal women.
37  lipid profile across the menstrual cycle in normocholesterolemic, premenopausal women.
38 zone increased 24 hours after ischemic PC in normocholesterolemic rabbits but not in hypercholesterol
39 ces inflammatory changes in blood vessels in normocholesterolemic rabbits, but it is not known whethe
40                                           In normocholesterolemic rabbits, ischemic PC reduced infarc
41                              In addition, in normocholesterolemic rabbits, pretreatment with N-acetyl
42 m promoted angiogenesis in ischemic limbs of normocholesterolemic rabbits.
43 r in hypercholesterolemic recipients than in normocholesterolemic recipients at 15 and 30 days after
44 esponsible soy components and the effects in normocholesterolemic subjects remain unclear.
45 elial function for up to 4 hours in healthy, normocholesterolemic subjects, probably through the accu
46 cantly lower in hypercholesterolemic than in normocholesterolemic swine, both at rest and during paci

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