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3D-Reconstruction of the Human Conventional Outflow System by Ribbon Scanning Confocal Microscopy

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TLDR
In this high-resolution, volumetric RSCM analysis, human eyes had far fewer outflow tract vessels than porcine eyes, which may point to factors downstream of the TM that increase the authors' vulnerability to glaucoma.
Abstract
Purpose: The risk for glaucoma is driven by the microanatomy and function of the anterior segment. We performed a computation-intense, high-resolution, full-thickness ribbon-scanning confocal microscopy (RSCM) of the outflow tract of two human eyes. We hypothesized this would reveal important species differences when compared to existing data of porcine eyes, an animal that does not spontaneously develop glaucoma. Methods: After perfusing two human octogenarian eyes with lectin-fluorophore conjugate and optical clearance with benzyl alcohol benzyl benzoate (BABB), anterior segments were scanned by RSCM and reconstructed in 3D for whole-specimen rendering. Morphometric analyses of the outflow tract were performed for the trabecular meshwork (TM), limbal, and perilimbal outflow structures and compared to existing porcine data. Results: RSCM provided high-resolution data for IMARIS-based surface reconstruction of outflow tract structures in 3D. Different from porcine eyes with an abundance of highly interconnected, narrow, and short collector channels (CCs), human eyes demonstrated fewer CCs which had a 1.5x greater cross-sectional area (CSA) and 2.6x greater length. Proximal CC openings at the level of Schlemm9s canal (SC) had a 1.3x larger CSA than distal openings into the scleral vascular plexus (SVP). CCs were 10.2x smaller in volume than the receiving SVP vessels. Axenfeld loops, projections of the long ciliary nerve, were also visualized. Conclusion: In this high-resolution, volumetric RSCM analysis, human eyes had far fewer outflow tract vessels than porcine eyes. Human CCs spanned several clock-hours and were larger than in porcine eyes. These species differences may point to factors downstream of the TM that increase our vulnerability to glaucoma.

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References
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Journal Article

Nitrovasodilators as a new class of ocular hypotensive agents.

TL;DR: Tonographic studies showed that topically applied nitroglycerin and hydralazine increased the facility (decreased the resistance) of aqueous humor leaving the eye and indicate that tophetically applied nitrovasodilators can effectively lower intraocular pressure at doses which have little effect on systemic blood pressure.
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Nitrovasodilator Effects on Intraocular Pressure and Outflow Facility in Monkeys

TL;DR: The capacity for topically applied NTG and HZN to reduce IOP in the living primate eye is demonstrated and it is suggested that, at certain drug doses, but not others, the IOP reduction may be mediated, in part, by an action on the outflow apparatus.
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Fluorophotometric study of the effect of the glaukos trabecular microbypass stent on aqueous humor dynamics.

TL;DR: Compared with cataract surgery alone, implantation of the iStent concomitant withCataract extraction significantly increased trabecular outflow facility, reduced IOP, and reduced the number of medications at 1 year.
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Anatomic changes in Schlemm's canal and collector channels in normal and primary open-angle glaucoma eyes using low and high perfusion pressures.

TL;DR: Compensatory mechanisms for transient and short periods of increased pressure appear to be diminished in POAG eyes, and variable response to pressure change in SC and CCs may be a contributing factor to outflow facility change inPOAG eyes.
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Outcomes of ab interno trabeculectomy with the trabectome by degree of angle opening.

TL;DR: SG≥2 is not associated with worse outcomes in AIT or phaco-AIT and there was no difference between SG≤2 and SG≥3 in reduction of IOP or medications, complications, secondary surgery and success rates.
Frequently Asked Questions (2)
Q1. What are the contributions in this paper?

In this paper, the authors used ribbon scanning confocal microscopy ( RSCM ) to reconstruct the outflow tract virtually. 

In the future, fluid dynamics studies that use https: //doi. org/10. 1371/journal. pone. The experiments were not meant to measure or compare outflow function Such structure-function correlation or computational fluidics simulation studies will be necessary in the future. While Imaris surfaces created informative approximations of outflow structures, this automated segmentation may need to be supplemented with manual segmentation for data that might be used in future fluid dynamics studies. Future studies will need to assess glaucoma specific changes of morphology and glycocalyx composition of the conventional outflow tract.