Publication | Open Access
OCT-based arterial elastography: robust estimation exploiting tissue biomechanics
105
Citations
15
References
2004
Year
Tissue VelocityEngineeringBiomedical EngineeringTissue ImagingBiomechanicsBlood Flow MeasurementRadiologyHealth SciencesMechanobiologyCardiovascular ImagingVascular ImageMedical ImagingTissue BiomechanicsMedical Image ComputingArterial Wall BiomechanicsBiomedical ImagingElastographyVascular Tissue SampleOptical Coherence Tomography
We present a novel multi-resolution variational framework for vascular optical coherence elastography (OCE). This method exploits prior information about arterial wall biomechanics to produce robust estimates of tissue velocity and strain, reducing the sensitivity of conventional tracking methods to both noise- and strain-induced signal decorrelation. The velocity and strain estimation performance of this new estimator is demonstrated in simulated OCT image sequences and in benchtop OCT scanning of a vascular tissue sample.
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