scholarly article | Q13442814 |
P50 | author | Friedrich Paulsen | Q89628057 |
Martin Pfister | Q90118271 | ||
Hannes Stegmann | Q90358052 | ||
P2093 | author name string | Fabian Garreis | |
Leopold Schmetterer | |||
Gerhard Garhöfer | |||
René M Werkmeister | |||
Valentin Aranha Dos Santos | |||
Alina Messner | |||
Kornelia Schützenberger | |||
Corinna Fischak | |||
P2860 | cites work | Ultrahigh-resolution anterior segment optical coherence tomography for analysis of corneal microarchitecture during wound healing | Q91570759 |
The impact of dry eye disease treatment on patient satisfaction and quality of life: A review | Q93007707 | ||
Refractive Index of the Human Corneal Epithelium and Stroma | Q34058295 | ||
Measurement of tear film thickness using ultrahigh-resolution optical coherence tomography | Q34814125 | ||
Fluorescein punctate staining traced to superficial corneal epithelial cells by impression cytology and confocal microscopy | Q34824116 | ||
The measurement of corneal thickness from center to limbus in vivo in C57BL/6 and BALB/c mice using two-photon imaging | Q34899538 | ||
Assessment of corneal epithelial thickness in dry eye patients | Q34996009 | ||
Grading Of Corneal and Conjunctival Staining in the Context of Other Dry Eye Tests | Q35542950 | ||
Toll-like receptor expression and activation in mice with experimental dry eye. | Q36159551 | ||
Ultrahigh-resolution OCT imaging of the human cornea | Q36300298 | ||
Ocular Surface Epithelial Thickness Evaluation in Dry Eye Patients: Clinical Correlations | Q36559274 | ||
Super-resolved thickness maps of thin film phantoms and in vivo visualization of tear film lipid layer using OCT. | Q37103187 | ||
Animal models of dry eye. | Q37153474 | ||
Dimensions and morphology of the cornea in three strains of mice | Q37363796 | ||
Corneal staining: do we really understand what we are seeing? | Q37381159 | ||
TFOS DEWS II pathophysiology report | Q38652987 | ||
TFOS DEWS II Introduction. | Q39453315 | ||
In Vivo Imaging and Morphometry of the Human Pre-Descemet's Layer and Endothelium With Ultrahigh-Resolution Optical Coherence Tomography | Q39749325 | ||
Effect of Topically Administered Chitosan-N-acetylcysteine on Corneal Wound Healing in a Rabbit Model. | Q41038031 | ||
The association between subjective and objective parameters for the assessment of dry-eye syndrome | Q41481439 | ||
A Ligation of the Lacrimal Excretory Duct in Mouse Induces Lacrimal Gland Inflammation with Proliferative Cells | Q41509600 | ||
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A murine model of dry eye induced by topical administration of erlotinib eye drops | Q47246663 | ||
The Pathophysiology of Dry Eye Disease: What We Know and Future Directions for Research | Q47884949 | ||
A new dry eye mouse model produced by exorbital and intraorbital lacrimal gland excision. | Q48171815 | ||
Distinguishing keratoconic eyes and healthy eyes using Ultrahigh-Resolution (UHR)-OCT based Corneal Epithelium Thickness Mapping. | Q49848390 | ||
Anterior segment optical coherence tomography | Q57165980 | ||
In vivo tear film thickness measurement and tear film dynamics visualization using spectral domain optical coherence tomography | Q60699392 | ||
Desiccating Stress Induces T Cell-Mediated Sjogren's Syndrome-Like Lacrimal Keratoconjunctivitis | Q61851332 | ||
CorneaNet: fast segmentation of cornea OCT scans of healthy and keratoconic eyes using deep learning | Q64248289 | ||
Effects of artificial tear treatment on corneal epithelial thickness and corneal topography findings in dry eye patients | Q88731496 | ||
P4510 | describes a project that uses | optical coherence tomography | Q899552 |
ImageJ | Q1659584 | ||
P433 | issue | 9 | |
P921 | main subject | optical coherence tomography | Q899552 |
eye disease | Q3041498 | ||
fluorescein | Q28453531 | ||
P304 | page(s) | 4884-4895 | |
P577 | publication date | 2019-08-28 | |
P1433 | published in | Biomedical Optics Express | Q4915117 |
P1476 | title | Characterization of dry eye disease in a mouse model by optical coherence tomography and fluorescein staining | |
P478 | volume | 10 |
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