Efficient capture of high-quality data on outcomes of treatment for macular diseases: The fight retinal blindness! project

Purpose: To describe the development of a web-based high-quality data collection tool to track the outcomes of treatment of macular disease in routine practice. Methods: Testing of a larger data collection tool established which fields a clinician would reliably fill out. The program, which was deve...

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Main Authors: Gillies, M., Walton, R., Liong, J., Arnold, J., McAllister, I., Morlet, Nigel, Hunyor, A., Guymer, R., Keeffe, J., Essex, R., Herrera-Bond, A., Glastonbury, B., Simpson, J., Barthelmes, D.
Format: Journal Article
Published: 2014
Online Access:http://hdl.handle.net/20.500.11937/46975
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author Gillies, M.
Walton, R.
Liong, J.
Arnold, J.
McAllister, I.
Morlet, Nigel
Hunyor, A.
Guymer, R.
Keeffe, J.
Essex, R.
Herrera-Bond, A.
Glastonbury, B.
Simpson, J.
Barthelmes, D.
author_facet Gillies, M.
Walton, R.
Liong, J.
Arnold, J.
McAllister, I.
Morlet, Nigel
Hunyor, A.
Guymer, R.
Keeffe, J.
Essex, R.
Herrera-Bond, A.
Glastonbury, B.
Simpson, J.
Barthelmes, D.
author_sort Gillies, M.
building Curtin Institutional Repository
collection Online Access
description Purpose: To describe the development of a web-based high-quality data collection tool to track the outcomes of treatment of macular disease in routine practice. Methods: Testing of a larger data collection tool established which fields a clinician would reliably fill out. The program, which was developed using freely available software, consists of modules interacting with a core system. The module for neovascular age-related macular degeneration is described here. Results: Data for initial visits can be entered within 30 seconds, 15 seconds for follow-up visits. Fifteen centers from Australia, New Zealand, and Switzerland are currently contributing data. Finalized data from 2,052 eyes of 1,693 participants dating from January 2006 were analyzed. Median (25th and 75th percentiles) visual acuity at the index visit was 55 (41, 68) logarithm of the minimum angle of resolution letters with the following lesion types: minimally classic 17.2%, predominantly classic 24.6%, occult 52.0%, idiopathic polypoidal choroidal vasculopathy 1.2%, and retinal angiomatous proliferation 3.2%. Conclusion: This software tool will facilitate the collection of large amounts of data on the routine use of treatments of neovascular age-related macular degeneration. This will allow us to analyze important potentially modifiable variables, such as the effect of different treatment patterns on visual outcomes, and to evaluate new treatments as they are introduced into practice. Copyright © 2014 by Ophthalmic Communications Society, Inc.
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spelling curtin-20.500.11937-469752017-09-13T14:28:06Z Efficient capture of high-quality data on outcomes of treatment for macular diseases: The fight retinal blindness! project Gillies, M. Walton, R. Liong, J. Arnold, J. McAllister, I. Morlet, Nigel Hunyor, A. Guymer, R. Keeffe, J. Essex, R. Herrera-Bond, A. Glastonbury, B. Simpson, J. Barthelmes, D. Purpose: To describe the development of a web-based high-quality data collection tool to track the outcomes of treatment of macular disease in routine practice. Methods: Testing of a larger data collection tool established which fields a clinician would reliably fill out. The program, which was developed using freely available software, consists of modules interacting with a core system. The module for neovascular age-related macular degeneration is described here. Results: Data for initial visits can be entered within 30 seconds, 15 seconds for follow-up visits. Fifteen centers from Australia, New Zealand, and Switzerland are currently contributing data. Finalized data from 2,052 eyes of 1,693 participants dating from January 2006 were analyzed. Median (25th and 75th percentiles) visual acuity at the index visit was 55 (41, 68) logarithm of the minimum angle of resolution letters with the following lesion types: minimally classic 17.2%, predominantly classic 24.6%, occult 52.0%, idiopathic polypoidal choroidal vasculopathy 1.2%, and retinal angiomatous proliferation 3.2%. Conclusion: This software tool will facilitate the collection of large amounts of data on the routine use of treatments of neovascular age-related macular degeneration. This will allow us to analyze important potentially modifiable variables, such as the effect of different treatment patterns on visual outcomes, and to evaluate new treatments as they are introduced into practice. Copyright © 2014 by Ophthalmic Communications Society, Inc. 2014 Journal Article http://hdl.handle.net/20.500.11937/46975 10.1097/IAE.0b013e318296b271 restricted
spellingShingle Gillies, M.
Walton, R.
Liong, J.
Arnold, J.
McAllister, I.
Morlet, Nigel
Hunyor, A.
Guymer, R.
Keeffe, J.
Essex, R.
Herrera-Bond, A.
Glastonbury, B.
Simpson, J.
Barthelmes, D.
Efficient capture of high-quality data on outcomes of treatment for macular diseases: The fight retinal blindness! project
title Efficient capture of high-quality data on outcomes of treatment for macular diseases: The fight retinal blindness! project
title_full Efficient capture of high-quality data on outcomes of treatment for macular diseases: The fight retinal blindness! project
title_fullStr Efficient capture of high-quality data on outcomes of treatment for macular diseases: The fight retinal blindness! project
title_full_unstemmed Efficient capture of high-quality data on outcomes of treatment for macular diseases: The fight retinal blindness! project
title_short Efficient capture of high-quality data on outcomes of treatment for macular diseases: The fight retinal blindness! project
title_sort efficient capture of high-quality data on outcomes of treatment for macular diseases: the fight retinal blindness! project
url http://hdl.handle.net/20.500.11937/46975