Literature DB >> 2182916

Graft geometry and venous intimal-medial hyperplasia in arteriovenous loop grafts.

M F Fillinger1, E R Reinitz, R A Schwartz, D E Resetarits, A M Paskanik, D Bruch, C E Bredenberg.   

Abstract

This study explores graft geometry and hemodynamics in a reproducible canine arteriovenous loop graft model of intimal-medial hyperplasia. Untapered 6 mm diameter polytetrafluoroethylene grafts (n = 10) were paired with 4 to 7 mm taper (n = 5) or 7 to 4 mm taper (n = 5) grafts for a 12-week period. Several hemodynamic variables were assessed at multiple locations, and venous intimal-medial thickness was measured at locations corresponding to the hemodynamic measurements. Color Doppler imaging demonstrated energy transfer out of the vessel in the form of perivascular tissue vibration. This was quantitated by the distance required for Doppler signal attenuation or volume of the detected vibration signal. Differences among graft types were noted for pressure, flow velocity, tissue vibration, and venous intimal-medial thickness. Hyperplasia was significantly decreased in 4 to 7 mm taper grafts. Stepwise deletion regression indicated volume of the vibration signal had a better correlation with venous intimal-medial thickness than any other variable (r 0.9, p less than 0.001). We conclude that graft geometry can have a significant impact on hemodynamic factors and venous intimal-medial hyperplasia in arteriovenous loop grafts. Flow disturbances appear to cause energy transfer through the vessel wall and into perivascular tissue. Kinetic energy transfer in the form of perivascular tissue vibration was quantitated in vivo and correlates strongly with venous intimal-medial thickness.

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Year:  1990        PMID: 2182916

Source DB:  PubMed          Journal:  J Vasc Surg        ISSN: 0741-5214            Impact factor:   4.268


  21 in total

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4.  Evaluation of the hemodynamics in straight 6-mm and tapered 6- to 8-mm grafts as upper arm hemodialysis vascular access.

Authors:  M Sarmast; H Niroomand-Oscuii; F Ghalichi; E Samiei
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Review 5.  Current understanding of intimal hyperplasia and effect of compliance in synthetic small diameter vascular grafts.

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Journal:  Biomater Sci       Date:  2020-07-09       Impact factor: 6.843

6.  Central venous obstruction management.

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8.  Wall shear stress measurement using phase contrast magnetic resonance imaging with phase contrast magnetic resonance angiography in arteriovenous polytetrafluoroethylene grafts.

Authors:  Sanjay Misra; Alex A Fu; Khamal D Misra; James F Glockner; Debabrata Mukhopadhyay
Journal:  Angiology       Date:  2009-07-21       Impact factor: 3.619

9.  Transitional Flow in a Cylindrical Flow Chamber for Studies at the Cellular Level.

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10.  A prospective evaluation of plasma-TFE and expanded PTFE grafts for routine and early use as vascular access during hemodialysis.

Authors:  T S Helling; P W Nelson; L Shelton
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