TY - JOUR
T1 - Aligning scan acquisition circles in optical coherence tomography images of the retinal nerve fibre layer
AU - Zhu, Haogang
AU - Crabb, David P.
AU - Schlottmann, Patricio G.
AU - Wollstein, Gadi
AU - Garway-Heath, David F.
PY - 2011/6
Y1 - 2011/6
N2 - Optical coherence tomography (OCT) is widely used in the assessment of retinal nerve fibre layer thickness (RNFLT) in glaucoma. Images are typically acquired with a circular scan around the optic nerve head. Accurate registration of OCT scans is essential for measurement reproducibility and longitudinal examination. This study developed and evaluated a special image registration algorithm to align the location of the OCT scan circles to the vessel features in the retina using probabilistic modelling that was optimised by an expectation-maximization algorithm. Evaluation of the method on 18 patients undergoing large number of scans indicated improved data acquisition and better reproducibility of measured RNFLT when scanning circles were closely matched. The proposed method enables clinicians to consider the RNFLT measurement and its scan circle location on the retina in tandem, reducing RNFLT measurement variability and assisting detection of real change of RNFLT in the longitudinal assessment of glaucoma.
AB - Optical coherence tomography (OCT) is widely used in the assessment of retinal nerve fibre layer thickness (RNFLT) in glaucoma. Images are typically acquired with a circular scan around the optic nerve head. Accurate registration of OCT scans is essential for measurement reproducibility and longitudinal examination. This study developed and evaluated a special image registration algorithm to align the location of the OCT scan circles to the vessel features in the retina using probabilistic modelling that was optimised by an expectation-maximization algorithm. Evaluation of the method on 18 patients undergoing large number of scans indicated improved data acquisition and better reproducibility of measured RNFLT when scanning circles were closely matched. The proposed method enables clinicians to consider the RNFLT measurement and its scan circle location on the retina in tandem, reducing RNFLT measurement variability and assisting detection of real change of RNFLT in the longitudinal assessment of glaucoma.
KW - Expectation-maximization
KW - image registration
KW - optical coherence tomography
KW - probabilistic modelling
KW - scan circle alignment
UR - https://www.scopus.com/pages/publications/79958019112
U2 - 10.1109/TMI.2011.2109962
DO - 10.1109/TMI.2011.2109962
M3 - 文章
C2 - 21296706
AN - SCOPUS:79958019112
SN - 0278-0062
VL - 30
SP - 1228
EP - 1238
JO - IEEE Transactions on Medical Imaging
JF - IEEE Transactions on Medical Imaging
IS - 6
M1 - 5706369
ER -