Study of geometrical uncertainty stemming from different reconstruction procedures on the flow field for a peripheral bypass graft

The geometry of conduits derived from in vivo image data is subject to acquisition and reconstruction errors. This results in a degree of uncertainty in defining the bounding geometry for a patient-specific anatomical conduit. The impact of the conduit geometry uncertainty should be considered with...

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Published in2010 Annual International Conference of the IEEE Engineering in Medicine and Biology Vol. 2010; pp. 4076 - 4079
Main Authors Gambaruto, A M, Sequeira, A
Format Conference Proceeding Journal Article
LanguageEnglish
Published United States IEEE 01.01.2010
Subjects
Online AccessGet full text
ISBN1424441234
9781424441235
ISSN1094-687X
1557-170X
DOI10.1109/IEMBS.2010.5627307

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Abstract The geometry of conduits derived from in vivo image data is subject to acquisition and reconstruction errors. This results in a degree of uncertainty in defining the bounding geometry for a patient-specific anatomical conduit. The impact of the conduit geometry uncertainty should be considered with respect to haemodynamic clinically relevant measures that may alter the perception and evaluation of prognosis and diagnosis. These are commonly fluid mechanic stresses on or near the wall. Taking an example of a peripheral bypass graft configuration, we examine the effects of image threshold on the geometry. Thresholding approaches are chosen from the existing image segmentation community and are based on clustering schemes. Two novel methods are also introduced. The geometries are reconstructed using a partition-of-unity implicit function approach from the stack of segmented cross-sections that yields a piecewise linear triangulated mesh. Methods to quantify the differences resulting in the virtual model reconstruction from the different thresholding methods are based on the distance between the models and the surface mean curvature.
AbstractList The geometry of conduits derived from in vivo image data is subject to acquisition and reconstruction errors. This results in a degree of uncertainty in defining the bounding geometry for a patient-specific anatomical conduit. The impact of the conduit geometry uncertainty should be considered with respect to haemodynamic clinically relevant measures that may alter the perception and evaluation of prognosis and diagnosis. These are commonly fluid mechanic stresses on or near the wall. Taking an example of a peripheral bypass graft configuration, we examine the effects of image threshold on the geometry. Thresholding approaches are chosen from the existing image segmentation community and are based on clustering schemes. Two novel methods are also introduced. The geometries are reconstructed using a partition-of-unity implicit function approach from the stack of segmented cross-sections that yields a piecewise linear triangulated mesh. Methods to quantify the differences resulting in the virtual model reconstruction from the different thresholding methods are based on the distance between the models and the surface mean curvature.
Author Gambaruto, A M
Sequeira, A
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/21096621$$D View this record in MEDLINE/PubMed
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Snippet The geometry of conduits derived from in vivo image data is subject to acquisition and reconstruction errors. This results in a degree of uncertainty in...
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StartPage 4076
SubjectTerms Blood Vessel Prosthesis
Computational modeling
Entropy
Geometry
Humans
Image reconstruction
Image segmentation
Magnetic Resonance Imaging
Numerical models
Stress, Mechanical
Uncertainty
Title Study of geometrical uncertainty stemming from different reconstruction procedures on the flow field for a peripheral bypass graft
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https://www.ncbi.nlm.nih.gov/pubmed/21096621
Volume 2010
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