Publication | Open Access
Advanced Non-Destructive Ocular Visualization Methods by Improved X-Ray Imaging Techniques
11
Citations
21
References
2017
Year
X-ray SpectroscopyVirtual OphthalmologyEngineeringMicroscopyAdvanced ImagingBiomedical EngineeringPolycapillary OpticsX-ray FluorescenceX-ray ImagingTissue ImagingNuclear MedicineNovel Imaging MethodRadiologyHealth SciencesConventional HistologyMedical ImagingOphthalmologyHistopathologyMedical Image ComputingRadiographic ImagingLimited X-ray ContrastX-ray DiffractionBiomedical ImagingX-ray Optic
Due to limited X-ray contrast, the use of micro-CT in histology is so far not as widespread as predicted. While specific staining procedures-mostly using iodine-address this shortcoming, long diffusion times restrict its use in the often time-constrained daily routine. Recently, a novel staining protocol has been proposed using a biochemical preconditioning step, which increases the permeability of the cells for the staining agent. This could enable the imaging of entire organs of small mammals at a yet unmatched image quality with reasonable preparation and scan times. We here propose an adaptation of this technique for virtual ophthalmology and histology by volumetrically assessing both human and porcine eyes. Hereby, we demonstrate that (contrast-enhanced) micro-CT can outperform conventional histology in the assessment of tumor entities, as well as functioning as a supplementary tool for surgeons in the positioning of intraocular implants in-vitro and as a general assessment tool for ophthalmologic specimens.
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