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2015 | OriginalPaper | Buchkapitel

Multi-subject Manifold Alignment of Functional Network Structures via Joint Diagonalization

verfasst von : Karl-Heinz Nenning, Kathrin Kollndorfer, Veronika Schöpf, Daniela Prayer, Georg Langs

Erschienen in: Information Processing in Medical Imaging

Verlag: Springer International Publishing

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Abstract

Functional magnetic resonance imaging group studies rely on the ability to establish correspondence across individuals. This enables location specific comparison of functional brain characteristics. Registration is often based on morphology and does not take variability of functional localization into account. This can lead to a loss of specificity, or confounds when studying diseases. In this paper we propose multi-subject functional registration by manifold alignment via coupled joint diagonalization. The functional network structure of each subject is encoded in a diffusion map, where functional relationships are decoupled from spatial position. Two-step manifold alignment estimates initial correspondences between functionally equivalent regions. Then, coupled joint diagonalization establishes common eigenbases across all individuals, and refines the functional correspondences. We evaluate our approach on fMRI data acquired during a language paradigm. Experiments demonstrate the benefits in matching accuracy achieved by coupled joint diagonalization compared to previously proposed functional alignment approaches, or alignment based on structural correspondences.

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Metadaten
Titel
Multi-subject Manifold Alignment of Functional Network Structures via Joint Diagonalization
verfasst von
Karl-Heinz Nenning
Kathrin Kollndorfer
Veronika Schöpf
Daniela Prayer
Georg Langs
Copyright-Jahr
2015
DOI
https://doi.org/10.1007/978-3-319-19992-4_36

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