Literature DB >> 1744148

A piece-wise non-linear elastic stress expression of human and pig coronary arteries tested in vitro.

D V Carmines1, J H McElhaney, R Stack.   

Abstract

Eight human and nineteen pig unembalmed proximal left anterior descending and circumflex coronary arteries were subjected to linear volume changes (2 s ramp time) at three fixed axial extensions while immersed in a physiological saline bath at body temperature. Measured parameters included: lumen pressure, outside diameter, axial force, and axial extension. The deformations were measured using a video dimensional analyzer. The arteries were inflated to pressures well above the physiological range at each axial extension. A latex inner tube was placed inside of each specimen to prevent leakage, and its effects upon the measured stresses were corrected analytically. With this method, the average circumferential and axial stresses could be computed directly from the experimental data. In both directions the average stresses measured displayed two distinct regions: stresses occurring for small diameter changes (physiological pressures) and stresses occurring for large diameter changes (high pressures). The resulting average small strain and large strain stress components were curve-fit separately and, when reassembled, provided a piece-wise model of the stress response of coronary arteries over a wide range of inflation pressures and axial extensions.

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Year:  1991        PMID: 1744148     DOI: 10.1016/0021-9290(91)90168-m

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  4 in total

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2.  A Novel Approach to Assess the In Situ Versus Ex Vivo Mechanical Behaviors of the Coronary Artery.

Authors:  Ruoya Wang; Julia Raykin; Luke P Brewster; Rudolph L Gleason
Journal:  J Biomech Eng       Date:  2017-01-01       Impact factor: 2.097

3.  Finite-element analysis of balloon angioplasty.

Authors:  S Oh; M Kleinberger; J H McElhaney
Journal:  Med Biol Eng Comput       Date:  1994-07       Impact factor: 2.602

4.  Generation of spatially aligned collagen fiber networks through microtransfer molding.

Authors:  Nisarga Naik; Jeffrey Caves; Elliot L Chaikof; Mark G Allen
Journal:  Adv Healthc Mater       Date:  2013-08-29       Impact factor: 9.933

  4 in total

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