Evaluation of optimal interpolation and segmentation of the optic nerves on magnetic resonance images for cross‐sectional area measurement

Author:

Chow Li Sze1ORCID,Paley Martyn N. J.2,Hickman Simon J.3

Affiliation:

1. Department of Electrical and Electronic Engineering, Faculty of Engineering Technology and Built Environment UCSI University Kuala Lumpur Malaysia

2. Department of Infection, Immunity and Cardiovascular Disease, The Medical School The University of Sheffield Sheffield UK

3. Department of Neurology Royal Hallamshire Hospital Sheffield UK

Abstract

AbstractThis study investigated nine combination methods produced from three interpolation (Lanczos, iterative curvature based interpolation, and contrast‐guided) and three segmentation (spatial fuzzy C‐means, modified fuzzy C‐means [mFCM], and level set method) models from optic nerve magnetic resonance images (MRI). The aim was to produce sharp edges of the optic nerves for cross‐sectional area measurement. Lanczos‐mFCM was identified as the best combination in terms of: image quality; Dice similarity coefficient; a similar area compared with measurements from raw images but with higher reproducibility; and the highest signal‐to‐noise and contrast‐to‐noise ratios. It was then applied to ten normal datasets. The mean cross‐sectional areas were 12.57 ± 1.92mm2 from proton density images, 12.98 ± 2.18mm2 from T2‐weighted (T2W) images including the optic nerve sheath, and 1.68 ± 0.69mm2 from the T2W images of the optic nerve only. The Lanczos‐mFCM method is recommended for future quantitative studies on optic nerve MRI.

Funder

Multiple Sclerosis Society

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Computer Vision and Pattern Recognition,Software,Electronic, Optical and Magnetic Materials

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