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Brain image data processing using collaborative data workflows on Texera

delete2024-07-10
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OA
AI
Y
Yunyan Ding
Y
Yicong Huang
P
Pan Gao
A
Andy Thai
A
Atchuth Naveen Chilaparasetti
M
M. Gopi
X
Xiangmin Xu
C
Chen Li *
DOI:10.3389/fncir.2024.1398884delete
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Abstract

Abstract

En 中文
In the realm of neuroscience, mapping the three-dimensional (3D) neural circuitry and architecture of the brain is important for advancing our understanding of neural circuit organization and function. This study presents a novel pipeline that transforms mouse brain samples into detailed 3D brain models using a collaborative data analytics platform called Texera. The user-friendly Texera platform allows for effective interdisciplinary collaboration between team members in neuroscience, computer vision, and data processing. Our pipeline utilizes the tile images from a serial two-photon tomography/TissueCyte system, then stitches tile images into brain section images, and constructs 3D whole-brain image datasets. The resulting 3D data supports downstream analyses, including 3D whole-brain registration, atlas-based segmentation, cell counting, and high-resolution volumetric visualization. Using this platform, we implemented specialized optimization methods and obtained significant performance enhancement in workflow operations. We expect the neuroscience community can adopt our approach for large-scale image-based data processing and analysis.
Keywords:
TissueCyte
circuit tracing
mouse brain
data analytics
image stitching
3D visualization
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Journal

Frontiers in Neural Circuits cover
Frontiers in Neural Circuits
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3
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University of California System
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university of california irvine
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