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2015 | OriginalPaper | Chapter

Improved Parkinson’s Disease Classification from Diffusion MRI Data by Fisher Vector Descriptors

Authors : Luis Salamanca, Nikos Vlassis, Nico Diederich, Florian Bernard, Alexander Skupin

Published in: Medical Image Computing and Computer-Assisted Intervention -- MICCAI 2015

Publisher: Springer International Publishing

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Due to the complex clinical picture of Parkinson’s disease (PD), the reliable diagnosis of patients is still challenging. A promising approach is the structural characterization of brain areas affected in PD by diffusion magnetic resonance imaging (dMRI). Standard classification methods depend on an accurate non-linear alignment of all images to a common reference template, and are challenged by the resulting huge dimensionality of the extracted feature space. Here, we propose a novel diagnosis pipeline based on the Fisher vector algorithm. This technique allows for a precise encoding into a high-level descriptor of standard diffusion measures like the fractional anisotropy and the mean diffusivity, extracted from the regions of interest (ROIs) typically involved in PD. The obtained low dimensional, fixed-length descriptors are independent of the image alignment and boost the linear separability of the problem in the description space, leading to more efficient and accurate diagnosis. In a test cohort of 50 PD patients and 50 controls, the implemented methodology outperforms previous methods when using a logistic linear regressor for classification of each ROI independently, which are subsequently combined into a single classification decision.

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Metadata
Title
Improved Parkinson’s Disease Classification from Diffusion MRI Data by Fisher Vector Descriptors
Authors
Luis Salamanca
Nikos Vlassis
Nico Diederich
Florian Bernard
Alexander Skupin
Copyright Year
2015
DOI
https://doi.org/10.1007/978-3-319-24571-3_15

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