Revista Brasileira de Oftalmologia | |
Dynamic ultra high speed Scheimpflug imaging for assessing corneal biomechanical properties | |
Renato Ambrósio Jr2  Isaac Ramos2  Allan Luz1  Fernando Correa Faria2  Andreas Steinmueller1  Matthias Krug1  Michael W. Belin1  Cynthia Jane Roberts1  | |
[1] ,Instituto de Olhos Renato AmbrósioRio de Janeiro RJ ,Brazil | |
关键词: Biomechanics; Cornea; Corneal topography; Tonometry; ocular; Biomecânica; Córnea; Topografia da córnea; Tanometria ocular; | |
DOI : 10.1590/S0034-72802013000200005 | |
来源: SciELO | |
【 摘 要 】
OBJECTIVE: To describe a novel technique for clinical characterization of corneal biomechanics using non-invasive dynamic imaging. METHODS: Corneal deformation response during non contact tonometry (NCT) is monitored by ultra-high-speed (UHS) photography. The Oculus Corvis ST (Scheimpflug Technology; Wetzlar, Germany) has a UHS Scheimpflug camera, taking over 4,300 frames per second and of a single 8mm horizontal slit, for monitoring corneal deformation response to NCT. The metered collimated air pulse or puff has a symmetrical configuration and fixed maximal internal pump pressure of 25 kPa. The bidirectional movement of the cornea in response to the air puff is monitored. RESULTS: Measurement time is 30ms, with 140 frames acquired. Advanced algorithms for edge detection of the front and back corneal contours are applied for every frame. IOP is calculated based on the first applanation moment. Deformation amplitude (DA) is determined as the highest displacement of the apex in the highest concavity (HC) moment. Applanation length (AL) and corneal velocity (CVel) are recorded during ingoing and outgoing phases. CONCLUSION: Corneal deformation can be monitored during non contact tonometry. The parameters generated provide clinical in vivo characterization of corneal biomechanical properties in two dimensions, which is relevant for different applications in Ophthalmology.
【 授权许可】
CC BY
All the contents of this journal, except where otherwise noted, is licensed under a Creative Commons Attribution License
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