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September 1, 1977Circulation Research114 citationsOpen Access

Wall shear stress distribution in a model canine artery during steady flow.

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RLRobert J. LutzJCJ. N. CannonKBKenneth B. Bischoff

Key Points

  • To measure the spatial distribution of wall shear stress in a canine arterial cast under steady flow conditions and assess its relationship to vascular disease sites.
  • Measured wall shear stress in a rigid plastic cast of a canine artery under steady flow conditions using an electrochemical technique.

Structured PICO

P
Population
Rigid plastic cast of a canine artery
I
Intervention
Steady flow and measurement of wall shear stress using an electrochemical technique
O
Outcome
Topographic distribution of wall shear stresssurrogate

In a canine artery model, wall shear stress is highly nonuniform, and sites of high or unstable shear stress correlate with regions prone to atherosclerosis.

Abstract

The wall shear stress pattern was measured in a rigid plastic cast of a canine artery during steady flow by means of an electrochemical technique. The topographic distribution of shear stress is very nonuniform, with regions of high and low shear in close proximity. The steady shear stresses are highest at the leading edge of flow dividers and at the entrance regions to branch vessels. The shapes of the shear stress curves in the celiac branch are primarily a function of the ratio of branch flow to total aortic flow. However, the shapes of the shear stress curves in the adjacent anterior mesenteric branch remain the same for different anterior mesenteric branch flow ratios, although the shear increases with the branch flow ratio. An unstable pattern of flow separation and reattachment is found at the anterior mesenteric flow divider lip and remains localized to that region. A correlation is suggested between sites of high shear stress, extremes in the range of stress, and unstable stress patterns and sites at which atherosclerosis has been shown to develop.

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Cite This Study

Lutz et al. (1977) studied this question.

synapsesocial.com/papers/6a1ab4bb9fa30811a0b902d8https://doi.org/10.1161/01.res.41.3.391
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Also Consider

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  4. 4Correlation of endothelial cell shape and wall shear stress in a stenosed dog aorta.1986 · 244 citations
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