Key result
Stent implantation in anesthetized dogs blunted adenosine-induced increases in coronary blood flow, flow reserve, and shear stress, while reducing LAD segmental compliance to zero (P<0.05).
Why the study?
Does stent implantation alter coronary hemodynamics and wall shear stress during adenosine-induced vasodilation in an anesthetized dog model?
Does stent implantation alter coronary hemodynamics and wall shear stress during adenosine-induced vasodilation in an anesthetized dog model?
p-value: p=<0.05
Stent implantation blunts normal alterations in fluid dynamics and wall shear stress during coronary vasodilation in vivo, reducing segmental compliance and attenuating flow reserve.
Stent effects on adenosine flow reserve and compliance warrant caution in animal models; leaves open translation to human coronary hemodynamics.
Coronary stents improve resting blood flow and flow reserve in the presence of stenoses, but the impact of these devices on fluid dynamics during profound vasodilation is largely unknown. We tested the hypothesis that stent implantation affects adenosine-induced alterations in coronary hemodynamics and wall shear stress in anesthetized dogs (n = 6) instrumented for measurement of left anterior descending coronary artery (LAD) blood flow, velocity, diameter, and radius of curvature. Indexes of fluid dynamics and shear stress were determined before and after placement of a slotted-tube stent in the absence and presence of an adenosine infusion (1.0 mg/min). Adenosine increased blood flow, Reynolds (Re) and Dean numbers (De), and regional and oscillatory shear stress concomitant with reductions in LAD vascular resistance and segmental compliance before stent implantation. Increases in LAD blood flow, Re, De, and indexes of shear stress were observed after stent deployment (P < 0.05). Stent implantation reduced LAD segmental compliance to zero and potentiated increases in segmental and coronary vascular resistance during adenosine. Adenosine-induced increases in coronary blood flow and reserve, Re, De, and regional and oscillatory shear stress were attenuated after the stent was implanted. The results indicate that stent implantation blunts alterations in fluid dynamics during coronary vasodilation in vivo.
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LaDisa et al. (2002) studied Coronary hemodynamics (n=6). Slotted-tube stent implantation vs. Before stent placement was evaluated on Alterations in coronary hemodynamics and wall shear stress (p=<0.05). Stent implantation in anesthetized dogs blunted adenosine-induced increases in coronary blood flow, flow reserve, and shear stress, while reducing LAD segmental compliance to zero (P<0.05).
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