Background glaucoma Shape Background glaucoma Shape Background glaucoma Shape
Grants > How Does Segmental Outflow Affect Outflow Resistance? Updated On: Ene. 23, 2025
National Glaucoma Research Grant

How Does Segmental Outflow Affect Outflow Resistance?

Darryl Overby, PhD

Principal Investigator

Darryl Overby, PhD

Imperial College London

London, United Kingdom

About the Research Project

Program

National Glaucoma Research

Award Type

Standard

Award Amount

$90,000

Active Dates

April 01, 2006 - March 31, 2009

Grant ID

G2006057

Acknowledgement

Recipient of the Thomas R. Lee Award for National Glaucoma Research.

Goals

Glaucoma is a disease typically associated with elevated intraocular pressure (IOP) caused by increased resistance to aqueous humor outflow. Glaucoma is treated clinically by reducing IOP, but the precise factors responsible for controlling IOP and outflow resistance are not well understood.

Dr. Overby proposes to study how the hydrodynamic patterns of aqueous humor outflow change in response to stimuli that affect outflow resistance. His hypothesis is because aqueous humor is confined to flow through only a fraction of total area of outflow pathway, outflow resistance is correlated to the area that is actively involved in hydrodynamic filtration of aqueous humor.

Summary

To test this hypothesis, he will aim to develop a new tracer method that will combine with confocal microscopy to visualize the hydrodynamic patterns of outflow and measure the active area of aqueous humor filtration in human eyes. The second aim is to use this tracer technique to quantify the relationship between outflow resistance and filtration area for changing IOP that causes a change in outflow resistance. The long-term goal of this project is to translate this fundamental understanding of outflow hydrodynamics into a strategy to reduce outflow resistance and IOP in glaucomatous eyes.