Skip to navigation Skip to content
  • Woodruff
  • Business
  • Health Sciences
  • Law
  • MARBL
  • Oxford College
  • Theology
  • Schools
    • Undergraduate

      • Emory College
      • Oxford College
      • Business School
      • School of Nursing

      Community

      • Emory College
      • Oxford College
      • Business School
      • School of Nursing
    • Graduate

      • Business School
      • Graduate School
      • School of Law
      • School of Medicine
      • School of Nursing
      • School of Public Health
      • School of Theology
  • Libraries
    • Libraries

      • Robert W. Woodruff
      • Business
      • Chemistry
      • Health Sciences
      • Law
      • MARBL
      • Music & Media
      • Oxford College
      • Theology
    • Library Tools

      • Course Reserves
      • Databases
      • Digital Scholarship (ECDS)
      • discoverE
      • eJournals
      • Electronic Dissertations
      • EmoryFindingAids
      • EUCLID
      • ILLiad
      • OpenEmory
      • Research Guides
  • Resources
    • Resources

      • Administrative Offices
      • Emory Healthcare
      • Academic Calendars
      • Bookstore
      • Campus Maps
      • Shuttles and Parking
      • Athletics: Emory Eagles
      • Arts at Emory
      • Michael C. Carlos Museum
      • Emory News Center
      • Emory Report
    • Resources

      • Emergency Contacts
      • Information Technology (IT)
      • Outlook Web Access
      • Office 365
      • Blackboard
      • OPUS
      • PeopleSoft Financials: Compass
      • Careers
      • Human Resources
      • Emory Alumni Association
  • Browse
    • Works by Author
    • Works by Journal
    • Works by Subject
    • Works by Dept
    • Faculty by Dept
  • For Authors
    • How to Submit
    • Deposit Advice
    • Author Rights
    • Publishing Your Data
    • FAQ
    • Emory Open Access Policy
    • Open Access Fund
  • About OpenEmory
    • About OpenEmory
    • About Us
    • Citing Articles
    • Contact Us
    • Privacy Policy
    • Terms of Use
 
Contact Us

Filter Results:

Year

  • 2015 (1)

Author

  • Ethier, Christopher (1)
  • Nguyen, Thao D. (1)

Subject

  • Engineering, Mechanical (1)
  • Health Sciences, Opthamology (1)

Journal

  • Experimental Eye Research (1)

Keyword

  • atomicforc (1)
  • axon (1)
  • axonaltransport (1)
  • biomechan (1)
  • biomedicin (1)
  • blockad (1)
  • canal (1)
  • cell (1)
  • comput (1)
  • correl (1)
  • cribrosa (1)
  • deform (1)
  • digit (1)
  • elev (1)
  • endotheli (1)
  • endothelialcel (1)
  • forc (1)
  • ganglion (1)
  • ganglioncel (1)
  • glaucoma (1)
  • head (1)
  • human (1)
  • imag (1)
  • interferometri (1)
  • intraocularpressur (1)
  • lamina (1)
  • laminacribrosa (1)
  • measur (1)
  • mechanobiolog (1)
  • meshwork (1)
  • microscopi (1)
  • nerv (1)
  • ophthalmolog (1)
  • optic (1)
  • pattern (1)
  • retin (1)
  • scienc (1)
  • speckl (1)
  • technolog (1)
  • trabecular (1)
  • transport (1)

Author department

  • BME: Admin (1)

Search Results for all work with filters:

  • Engineering, Biomedical
  • life
  • pressur
  • intraocular
  • atom

Work 1 of 1

Sorted by relevance

Article

Biomechanical assessment in models of glaucomatous optic neuropathy

by Thao D. Nguyen; Christopher Ethier

2015

Subjects
  • Engineering, Biomedical
  • Engineering, Mechanical
  • Health Sciences, Opthamology
  • File Download
  • View Abstract

Abstract:Close

The biomechanical environment within the eye is of interest in both the regulation of intraocular pressure and the loss of retinal ganglion cell axons in glaucomatous optic neuropathy. Unfortunately, this environment is complex and difficult to determine. Here we provide a brief introduction to basic concepts of mechanics (stress, strain, constitutive relationships) as applied to the eye, and then describe a variety of experimental and computational approaches used to study ocular biomechanics. These include finite element modeling, direct experimental measurements of tissue displacements using optical and other techniques, direct experimental measurement of tissue microstructure, and combinations thereof. Thanks to notable technical and conceptual advances in all of these areas, we are slowly gaining a better understanding of how tissue biomechanical properties in both the anterior and posterior segments may influence the development of, and risk for, glaucomatous optic neuropathy. Although many challenging research questions remain unanswered, the potential of this body of work is exciting; projects underway include the coupling of clinical imaging with biomechanical modeling to create new diagnostic tools, development of IOP control strategies based on improved understanding the mechanobiology of the outflow tract, and attempts to develop novel biomechanically-based therapeutic strategies for preservation of vision in glaucoma.
Site Statistics
  • 16,733
  • Total Works
  • 3,622,163
  • Downloads
  • 1,098,074
  • Downloads This Year
  • 6,807
  • Faculty Profiles

Copyright © 2016 Emory University - All Rights Reserved
540 Asbury Circle, Atlanta, GA 30322-2870
(404) 727-6861
Privacy Policy | Terms & Conditions

v2.2.8-dev

Contact Us Recent and Popular Items
Download now