Background <p>Scanning electron microscopy (SEM) permits three-dimensional assessment of tissue surfaces. We compared corneal epithelial repair with atherosclerotic arterial remodelling and evaluated a shared semi-quantitative framework.</p> Methods <p>Rabbit corneal excision wounds were assessed at five healing intervals, and human atherosclerotic arterial specimens were processed by a common SEM protocol. Twenty-two representative vascular/thrombotic micrographs were selected for illustration and grading; corneal epithelial migration was measured directly. Two blinded observers independently graded applicable components of a five-parameter ordinal instrument. Agreement was assessed using quadratically weighted Cohen’s kappa.</p> Results <p>Overall agreement across graded vascular parameters was substantial to near-perfect (κ<sub>v</sub> 0.74–0.88); parameter-specific estimates were unavailable. Corneal epithelial migration progressed from no measurable advance at 1&#xa0;h to complete closure by 2 years. The vascular series extended from intact endothelial corrugations through platelet adhesion, foam-cell erosion, calcific plaque disruption, and fibrin–erythrocyte thrombus. Component grades increased with morphological severity. Composite totals were not reported because the specimen-level component records needed for verification were incomplete.</p> Conclusion <p>Both tissues were consistent with an initial provisional fibrin scaffold followed by divergent remodelling. In this selected image set, SEM with semi-quantitative scoring was feasible and internally reproducible, while the corneal arm was supported by direct measurements. Larger independent cohorts, predefined sampling, and external validation are required before broader use.</p>

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Scanning Electron Microscopy of Corneal and Vascular Wound Healing: A Comprehensive Morphological Study

  • Hesham N. Mustafa

摘要

Background

Scanning electron microscopy (SEM) permits three-dimensional assessment of tissue surfaces. We compared corneal epithelial repair with atherosclerotic arterial remodelling and evaluated a shared semi-quantitative framework.

Methods

Rabbit corneal excision wounds were assessed at five healing intervals, and human atherosclerotic arterial specimens were processed by a common SEM protocol. Twenty-two representative vascular/thrombotic micrographs were selected for illustration and grading; corneal epithelial migration was measured directly. Two blinded observers independently graded applicable components of a five-parameter ordinal instrument. Agreement was assessed using quadratically weighted Cohen’s kappa.

Results

Overall agreement across graded vascular parameters was substantial to near-perfect (κv 0.74–0.88); parameter-specific estimates were unavailable. Corneal epithelial migration progressed from no measurable advance at 1 h to complete closure by 2 years. The vascular series extended from intact endothelial corrugations through platelet adhesion, foam-cell erosion, calcific plaque disruption, and fibrin–erythrocyte thrombus. Component grades increased with morphological severity. Composite totals were not reported because the specimen-level component records needed for verification were incomplete.

Conclusion

Both tissues were consistent with an initial provisional fibrin scaffold followed by divergent remodelling. In this selected image set, SEM with semi-quantitative scoring was feasible and internally reproducible, while the corneal arm was supported by direct measurements. Larger independent cohorts, predefined sampling, and external validation are required before broader use.