Automated Olfactory Bulb Segmentation on High Resolutional T2-Weighted MRI
Santiago Estrada, Ran Lu, Kersten Diers, Weiyi Zeng, Philipp Ehses,, Tony St\"ocker, Monique M.B Breteler, Martin Reuter

TL;DR
This paper presents a novel deep learning pipeline for fully automated, accurate segmentation of the olfactory bulb in high-resolution MRI scans, addressing a previously neglected area in neuroimage analysis.
Contribution
It introduces a three-stage deep learning method with self-attention mechanisms for reliable OB segmentation, validated across multiple datasets and demographics.
Findings
High boundary delineation accuracy
Effective OB localization and volume estimation
Generalizes well to external datasets
Abstract
The neuroimage analysis community has neglected the automated segmentation of the olfactory bulb (OB) despite its crucial role in olfactory function. The lack of an automatic processing method for the OB can be explained by its challenging properties. Nonetheless, recent advances in MRI acquisition techniques and resolution have allowed raters to generate more reliable manual annotations. Furthermore, the high accuracy of deep learning methods for solving semantic segmentation problems provides us with an option to reliably assess even small structures. In this work, we introduce a novel, fast, and fully automated deep learning pipeline to accurately segment OB tissue on sub-millimeter T2-weighted (T2w) whole-brain MR images. To this end, we designed a three-stage pipeline: (1) Localization of a region containing both OBs using FastSurferCNN, (2) Segmentation of OB tissue within the…
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Taxonomy
TopicsOlfactory and Sensory Function Studies · Advanced Chemical Sensor Technologies · Neurological Disease Mechanisms and Treatments
