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July 1, 1980AJP Heart and Circulatory Physiology825 citations

Adaptive regulation of wall shear stress to flow change in the canine carotid artery

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AKA. KamiyaTTTatsuo Togawa

Key Result

Construction of an arteriovenous shunt in dogs demonstrated that wall shear rate recovered to within 15% of control levels at 6-8 months due to vessel dilatation or atrophy.

Key Points

  • The research aims to understand how the vascular wall adapts to changes in blood flow.
  • Constructed an arteriovenous shunt between the common carotid artery and external jugular vein in 12 dogs.
  • Measured arterial internal radius using angiography and pressure-volume relationships.
  • Calculated wall shear rate based on blood flow and arterial radius.
  • Increased blood flow led to an increase in arterial internal radius, while a decrease resulted in atrophy.
  • Wall shear rate recovered to near control levels (within 15%) with a flow less than four times the baseline.
  • Transendothelial protein permeability showed a strong correlation with wall shear (r = 0.934).

PICO

P
Population
Vascular adaptation to blood flow changes (n=12)
I
Intervention / Comparator
Arteriovenous shunt construction vs Control level
O
Primary Outcome
Arterial internal radius and wall shear rate

Abstract

To study the adaptive response of the vascular wall to blood flow changes, an arteriovenous shunt was constructed between the common carotid artery and the external jugular vein in 12 dogs. Six to eight months postoperatively, the arterial internal radius (r) was determined by angiography and/or the use of pressure-volume relationship. The results showed that r increased with increased flow load (f) and vice versa. Wall shear rate (gamma) was calculated from gamma = 4f/(tau r3), assuming laminar flow. The value of gamma, initially proportional to f, had recovered almost to the control level (within 15%) due to the vessel dilatation or atrophy during the chronic experiment, when f was less than 4 times the control. Transendothelial protein permeability, evaluated at the T-1824-stained surface by a reflectometric method, also showed a close correlation with wall shear (r = 0.934). A local autoregulatory mechanism of wall shear stress involving protein turnover in the vascular wall is suggested.

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Cite This Study

Kamiya et al. (1980) studied Vascular adaptation to blood flow changes (n=12). Arteriovenous shunt construction vs. Control level was evaluated on Arterial internal radius and wall shear rate. Construction of an arteriovenous shunt in dogs demonstrated that wall shear rate recovered to within 15% of control levels at 6-8 months due to vessel dilatation or atrophy.

synapsesocial.com/papers/6a17504538942aef8a8d7971https://doi.org/10.1152/ajpheart.1980.239.1.h14
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