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Segment-specific Associations Between Local Haemodynamic and Imaging Markers of Early Atherosclerosis at the Carotid Artery: an Human Study

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Date 2018 Oct 12
PMID 30305419
Citations 22
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Abstract

Low and oscillatory wall shear stress (WSS) has long been hypothesized as a risk factor for atherosclerosis; however, evidence has been inferred primarily from model and post-mortem studies, or clinical studies of patients with already-developed plaques. This study aimed to identify associations between local haemodynamic and imaging markers of early atherosclerosis. Comprehensive magnetic resonance imaging allowed quantification of contrast enhancement (CE) (a marker of endothelial dysfunction) and vessel wall thickness at two distinct segments: the internal carotid artery bulb and the common carotid artery (CCA). Strict criteria were applied to a large dataset to exclude inward remodelling, resulting in 41 cases for which personalized computational fluid dynamic simulations were performed. After controlling for cardiovascular risk factors, bulb wall thickening was found to be weakly, but not significantly, associated with oscillatory WSS. CE at the bulb was significantly associated with low WSS ( < 0.001) and low flow helicity ( < 0.05). No significant associations were found for the CCA segment. Local haemodynamics at the bulb were significantly correlated with blood flow rates and heart rates, but not carotid bifurcation geometry (flare and curvature). Therefore low, but not oscillatory, WSS is an early independent marker of atherosclerotic changes preceding intimal thickening at the carotid bulb.

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References
1.
Kerwin W, OBrien K, Ferguson M, Polissar N, Hatsukami T, Yuan C . Inflammation in carotid atherosclerotic plaque: a dynamic contrast-enhanced MR imaging study. Radiology. 2006; 241(2):459-68. PMC: 1820770. DOI: 10.1148/radiol.2412051336. View

2.
Santilli S, Stevens R, Anderson J, Payne W, Caldwell M . Transarterial wall oxygen gradients at the dog carotid bifurcation. Am J Physiol. 1995; 268(1 Pt 2):H155-61. DOI: 10.1152/ajpheart.1995.268.1.H155. View

3.
Hoi Y, Wasserman B, Xie Y, Najjar S, Ferruci L, Lakatta E . Characterization of volumetric flow rate waveforms at the carotid bifurcations of older adults. Physiol Meas. 2010; 31(3):291-302. PMC: 2943236. DOI: 10.1088/0967-3334/31/3/002. View

4.
Wasserman B, Smith W, Trout 3rd H, Cannon 3rd R, Balaban R, Arai A . Carotid artery atherosclerosis: in vivo morphologic characterization with gadolinium-enhanced double-oblique MR imaging initial results. Radiology. 2002; 223(2):566-73. DOI: 10.1148/radiol.2232010659. View

5.
Antiga L, Wasserman B, Steinman D . On the overestimation of early wall thickening at the carotid bulb by black blood MRI, with implications for coronary and vulnerable plaque imaging. Magn Reson Med. 2008; 60(5):1020-8. DOI: 10.1002/mrm.21758. View