about
Drug-eluting stent: a review and updateVariation in the human soluble epoxide hydrolase gene and risk of restenosis after percutaneous coronary interventionGlycogen synthase kinase 3 beta positively regulates Notch signaling in vascular smooth muscle cells: role in cell proliferation and survivalInterstitial flow promotes vascular fibroblast, myofibroblast, and smooth muscle cell motility in 3-D collagen I via upregulation of MMP-1Tuning of collagen scaffold properties modulates embedded endothelial cell regulatory phenotype in repair of vascular injuries in vivo.Comparison of artery organ culture and co-culture models for studying endothelial cell migration and its effect on smooth muscle cell proliferation and migration.Apolipoprotein E inhibition of vascular hyperplasia and neointima formation requires inducible nitric oxide synthase.Pathogen recognition by the long pentraxin PTX3.Specific binding to intracellular proteins determines arterial transport properties for rapamycin and paclitaxelVascular hyper-reactivity following arterial balloon injury: distant and delayed effects.Dynamic expressions of monocyte chemo attractant protein-1 and CC chamomile receptor 2 after balloon injury and their effects in intimal proliferation.In stent restenosis: bane of the stent era.Integrin alpha(v)beta(3) as a target in the prevention of neointimal hyperplasia.Treatment of vertebral artery origin stenosis with a Pharos stent device: a single center experience.Vinpocetine suppresses pathological vascular remodeling by inhibiting vascular smooth muscle cell proliferation and migration.Blood Pressure Levels at the Time of Percutaneous Coronary Revascularization and Risk of Coronary In-Stent RestenosisUndersized angioplasty and stenting of symptomatic intracranial tight stenosis with Enterprise: Evaluation of clinical and vascular outcome.Dependence of proliferative vascular smooth muscle cells on CD98hc (4F2hc, SLC3A2)Sonic Hedgehog induces Notch target gene expression in vascular smooth muscle cells via VEGF-AEnhanced neointimal fibroblast, myofibroblast content and altered extracellular matrix composition: Implications in the progression of human peripheral artery restenosisRoles of bone-marrow-derived cells and inflammatory cytokines in neointimal hyperplasia after vascular injuryUse of rosiglitazone before and after vascular injury in hypercholesterolemic rabbits: Assessment of neointimal formationEvaluating surface bound rTFPI through an in vitro model of vessel wall injury.Neoatherosclerosis and Late Thrombosis After Percutaneous Coronary Intervention: Translational Cardiology and Comparative Medicine from Bench to Bedside.
P2860
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P2860
description
2002 nî lūn-bûn
@nan
2002 թուականի Յունուարին հրատարակուած գիտական յօդուած
@hyw
2002 թվականի հունվարին հրատարակված գիտական հոդված
@hy
2002年の論文
@ja
2002年論文
@yue
2002年論文
@zh-hant
2002年論文
@zh-hk
2002年論文
@zh-mo
2002年論文
@zh-tw
2002年论文
@wuu
name
Pathophysiology of coronary artery restenosis.
@ast
Pathophysiology of coronary artery restenosis.
@en
type
label
Pathophysiology of coronary artery restenosis.
@ast
Pathophysiology of coronary artery restenosis.
@en
prefLabel
Pathophysiology of coronary artery restenosis.
@ast
Pathophysiology of coronary artery restenosis.
@en
P1476
Pathophysiology of coronary artery restenosis.
@en
P2093
Robert S Schwartz
Timothy D Henry
P478
P577
2002-01-01T00:00:00Z