TY - JOUR
T1 - Automated retinal image quality assessment on the UK Biobank dataset for epidemiological studies
AU - on behalf of The UK Biobank Eye and Vision Consortium
AU - Welikala, R. A.
AU - Fraz, M. M.
AU - Foster, P. J.
AU - Whincup, P. H.
AU - Rudnicka, A. R.
AU - Owen, C. G.
AU - Strachan, D. P.
AU - Barman, S. A.
AU - Aslam, Tariq
AU - Barman, Sarah
AU - Bishop, Paul
AU - Blows, Peter
AU - Bunce, Catey
AU - Carare, Roxana
AU - Chakravarthy, Usha
AU - Chan, Michelle
AU - Chianca, Antonietta
AU - Cipriani, Valentina
AU - Crabb, David
AU - Cumberland, Philippa
AU - Day, Alexander
AU - Desai, Parul
AU - Dhillon, Bal
AU - Dick, Andrew
AU - foster, Paul
AU - Gallacher, John
AU - Garway-Heath, David
AU - Goverdhan, Rini
AU - Guggenheim, Jeremy
AU - Gupta, Priyal
AU - Hammond, Chris
AU - Hogg, Ruth
AU - Hughes, Anne
AU - Keane, Pearse
AU - Khaw, Sir Peng Tee
AU - Khawaja, Anthony
AU - Lascaratos, Gerassimos
AU - Lotery, Andrew
AU - Luthert, Phil
AU - Mac-Gillivray, Tom
AU - Mackie, Sarah
AU - Martin, Keith
AU - McGaughey, Michelle
AU - McGuinness, Bernadette
AU - McKay, Gareth
AU - McKibbin, Martin
AU - Mitry, Danny
AU - Moore, Tony
AU - Morgan, James
AU - Zhu, Haogang
N1 - Publisher Copyright:
© 2016 Elsevier Ltd.
PY - 2016/4/1
Y1 - 2016/4/1
N2 - Morphological changes in the retinal vascular network are associated with future risk of many systemic and vascular diseases. However, uncertainty over the presence and nature of some of these associations exists. Analysis of data from large population based studies will help to resolve these uncertainties. The QUARTZ (QUantitative Analysis of Retinal vessel Topology and siZe) retinal image analysis system allows automated processing of large numbers of retinal images. However, an image quality assessment module is needed to achieve full automation. In this paper, we propose such an algorithm, which uses the segmented vessel map to determine the suitability of retinal images for use in the creation of vessel morphometric data suitable for epidemiological studies. This includes an effective 3-dimensional feature set and support vector machine classification. A random subset of 800 retinal images from UK Biobank (a large prospective study of 500,000 middle aged adults; where 68,151 underwent retinal imaging) was used to examine the performance of the image quality algorithm. The algorithm achieved a sensitivity of 95.33% and a specificity of 91.13% for the detection of inadequate images. The strong performance of this image quality algorithm will make rapid automated analysis of vascular morphometry feasible on the entire UK Biobank dataset (and other large retinal datasets), with minimal operator involvement, and at low cost.
AB - Morphological changes in the retinal vascular network are associated with future risk of many systemic and vascular diseases. However, uncertainty over the presence and nature of some of these associations exists. Analysis of data from large population based studies will help to resolve these uncertainties. The QUARTZ (QUantitative Analysis of Retinal vessel Topology and siZe) retinal image analysis system allows automated processing of large numbers of retinal images. However, an image quality assessment module is needed to achieve full automation. In this paper, we propose such an algorithm, which uses the segmented vessel map to determine the suitability of retinal images for use in the creation of vessel morphometric data suitable for epidemiological studies. This includes an effective 3-dimensional feature set and support vector machine classification. A random subset of 800 retinal images from UK Biobank (a large prospective study of 500,000 middle aged adults; where 68,151 underwent retinal imaging) was used to examine the performance of the image quality algorithm. The algorithm achieved a sensitivity of 95.33% and a specificity of 91.13% for the detection of inadequate images. The strong performance of this image quality algorithm will make rapid automated analysis of vascular morphometry feasible on the entire UK Biobank dataset (and other large retinal datasets), with minimal operator involvement, and at low cost.
KW - Epidemiological studies
KW - Image quality
KW - Large retinal datasets
KW - Retinal image
KW - UK Biobank
KW - Vessel segmentation
UR - https://www.scopus.com/pages/publications/84962169639
U2 - 10.1016/j.compbiomed.2016.01.027
DO - 10.1016/j.compbiomed.2016.01.027
M3 - 文章
C2 - 26894596
AN - SCOPUS:84962169639
SN - 0010-4825
VL - 71
SP - 67
EP - 76
JO - Computers in Biology and Medicine
JF - Computers in Biology and Medicine
ER -