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The Ocular Surface|February 23, 2021
The ocular surface immune system through the eyes of agingJeremias G Galletti, Cintia S de PaivaThe Ocular Surface|November 7, 2016
Examination of Gland Dropout Detected on Infrared Meibography by Using Optical Coherence Tomography MeibographyYoung-Sik Yoo, Kyung-Sun Na, Yong-Soo Byun, et al.The Ocular Surface|November 7, 2016
Corneal Nerve and Epithelial Cell Alterations in Corneal Allodynia: An In Vivo Confocal Microscopy Case SeriesPedram Hamrah, Yureeda Qazi, Bashar Shahatit, et al.The Ocular Surface|March 29, 2017
Role of high resolution optical coherence tomography in diagnosing ocular surface squamous neoplasia with coexisting ocular surface diseasesMarwan Atallah, Madhura Joag, Anat Galor, et al.The Ocular Surface|March 5, 2019
Preclinical studies evaluating the effect of semifluorinated alkanes on ocular surface and tear fluid dynamicsPriyanka Agarwal, Darina Khun, Sonja Krösser, et al.The Ocular Surface|April 3, 2019
Response profiles to a controlled adverse desiccating environment based on clinical and tear molecule changesItziar Fernández, Alberto López-Miguel, Amalia Enríquez-de-Salamanca, et al.The Ocular Surface|March 27, 2017
Tear cytokine profile of glaucoma patients treated with preservative-free or preserved latanoprostJose M Martinez-de-la-Casa, Francisco Perez-Bartolome, Elena Urcelay, et al.The Ocular Surface|November 16, 2018
A novel murine model for contact lens wear reveals clandestine IL-1R dependent corneal parainflammation and susceptibility to microbial keratitis upon inoculation with Pseudomonas aeruginosaMatteo M E Metruccio, Stephanie J Wan, Hart Horneman, et al.The Ocular Surface|September 23, 2019
Symptom improvement in dry eye subjects following intranasal tear neurostimulation: Results of two studies utilizing a controlled adverse environmentGuruprasad R Pattar, Gary Jerkins, David G Evans, et al.Pageof 110