Publication | Open Access
Resonant Doppler flow imaging and optical vivisection of retinal blood vessels
94
Citations
27
References
2007
Year
Optical VivisectionEngineeringBiomedical EngineeringRetinaVitreous BodySample MovementBiomedical OpticVascular SurgeryRetinal Blood VesselsRadiologyVascular ImageOphthalmologyMedical ImagingCamera IntegrationPhysiological OpticBiophotonicsMedical Image ComputingOptical ImagingBiomedical ImagingOptical Coherence TomographyGlaucomaQuantitative Phase ImagingMedicine
For Fourier domain optical coherence tomography any sample movement during camera integration causes blurring of interference fringes and as such reduction of sensitivity for flow detection. The proposed method overcomes this problem by phase-matching a reference signal to the sample motion. The interference fringes corresponding to flow signal will appear frozen across the detector whereas those of static sample structures will be blurred resulting in enhanced contrast for blood vessels. An electro-optic phase modulator in the reference arm, driven with specific phase cycles locked to the detection frequency, allows not only for qualitative but also for quantitative flow detection already from the relative signal intensities. First applications to extract in-vivo retinal flow and to visualize 3D vascularization, i.e. optical vivisection, are presented.
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