Over the past decade, knowledge about the ocular surface in glaucoma has significantly increased through the use of in vivo laser scanning confocal microscopy (LSCM). This in vivo imaging method can show modifications at the cellular level induced by anti-glaucoma drugs on ocular surface structures and adnexa in the eye. High-quality images of the conjunctiva, cornea, limbus, meibomian glands, and lymphoid structures during therapy can be obtained. In addition, LSCM opened new fields of research on the patho-physiology of aqueous humor (AH) hydrodynamics in untreated, and in medically or surgically treated glaucomatous patients. In these conditions, an enhancement of the trans-scleral AH outflow contributed to clarification of the mechanism of action of different anti-glaucoma medications and surgical approaches. Finally, the use of LSCM represented a huge advance in evaluation of bleb functionality after filtration surgery, defining the hallmarks of AH filtration through the bleb-wall and distinguishing functional from nonfunctional blebs. Thus, signs seen with LSCM may anticipate clinical failure, guiding the clinician in planning the appropriate timing of the various steps in bleb management. In this review we summarize the current knowledge about in vivo LSCM of the ocular surface in glaucoma.

In vivo laser scanning confocal microscopy of the ocular surface in glaucoma / Mastropasqua, L; Agnifili, L; Mastropasqua, R; Fasanella, V; Nubile, M; Toto, L; Carpineto, P; Ciancaglini, M. - In: MICROSCOPY AND MICROANALYSIS. - ISSN 1431-9276. - 20:3(2014), pp. 879-894. [10.1017/S1431927614000324]

In vivo laser scanning confocal microscopy of the ocular surface in glaucoma

Mastropasqua R;
2014

Abstract

Over the past decade, knowledge about the ocular surface in glaucoma has significantly increased through the use of in vivo laser scanning confocal microscopy (LSCM). This in vivo imaging method can show modifications at the cellular level induced by anti-glaucoma drugs on ocular surface structures and adnexa in the eye. High-quality images of the conjunctiva, cornea, limbus, meibomian glands, and lymphoid structures during therapy can be obtained. In addition, LSCM opened new fields of research on the patho-physiology of aqueous humor (AH) hydrodynamics in untreated, and in medically or surgically treated glaucomatous patients. In these conditions, an enhancement of the trans-scleral AH outflow contributed to clarification of the mechanism of action of different anti-glaucoma medications and surgical approaches. Finally, the use of LSCM represented a huge advance in evaluation of bleb functionality after filtration surgery, defining the hallmarks of AH filtration through the bleb-wall and distinguishing functional from nonfunctional blebs. Thus, signs seen with LSCM may anticipate clinical failure, guiding the clinician in planning the appropriate timing of the various steps in bleb management. In this review we summarize the current knowledge about in vivo LSCM of the ocular surface in glaucoma.
2014
20
3
879
894
In vivo laser scanning confocal microscopy of the ocular surface in glaucoma / Mastropasqua, L; Agnifili, L; Mastropasqua, R; Fasanella, V; Nubile, M; Toto, L; Carpineto, P; Ciancaglini, M. - In: MICROSCOPY AND MICROANALYSIS. - ISSN 1431-9276. - 20:3(2014), pp. 879-894. [10.1017/S1431927614000324]
Mastropasqua, L; Agnifili, L; Mastropasqua, R; Fasanella, V; Nubile, M; Toto, L; Carpineto, P; Ciancaglini, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1201151
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