paper-with-me

Papers

Multi-Domain Data Aggregation for Axon and Myelin Segmentation in Histology Images

2024-09-17 · Armand Collin, Arthur Boschet, Mathieu Boudreau, Julien Cohen-Adad

Quantifying axon and myelin properties (e.g., axon diameter, myelin thickness, g-ratio) in histology images can provide useful information about microstructural changes caused by neurodegenerative diseases. Automatic tissue segmentation is an important tool for these datasets, as a single stained section can contain up to thousands of axons. Advances in deep learning have made this task quick and reliable with minimal overhead, but a deep learning model trained by one research group will hardly ever be usable by other groups due to differences in their histology training data. This is partly due to subject diversity (different body parts, species, genetics, pathologies) and also to the range of modern microscopy imaging techniques resulting in a wide variability of image features (i.e., contrast, resolution). There is a pressing need to make AI accessible to neuroscience researchers to facilitate and accelerate their workflow, but publicly available models are scarce and poorly maintained. Our approach is to aggregate data from multiple imaging modalities (bright field, electron microscopy, Raman spectroscopy) and species (mouse, rat, rabbit, human), to create an open-source, durable tool for axon and myelin segmentation. Our generalist model makes it easier for researchers to process their data and can be fine-tuned for better performance on specific domains. We study the benefits of different aggregation schemes. This multi-domain segmentation model performs better than single-modality dedicated learners (p=0.03077), generalizes better on out-of-distribution data and is easier to use and maintain. Importantly, we package the segmentation tool into a well-maintained open-source software ecosystem (see https://github.com/axondeepseg/axondeepseg).

📄 PDF Abstract BibTeX arXiv:2409.11552

Code (2)

axondeepseg/axondeepseg 공식 구현 tf
neuropoly/axondeepseg tf

Tasks

Segmentation

Similar Papers 제목 키워드 기반

gACSON software for automated segmentation and morphology analyses of myelinated axons in 3D electron microscopy

2021-12-13 · Andrea Behanova, Ali Abdollahzadeh, Ilya Belevich, Eija Jokitalo 외

Background and Objective: Advances in electron microscopy (EM) now allow three-dimensional (3D) imaging of hundreds of micrometers of tissue with nanometer-scale resolution, providing new opportunities to study the ultra…

Segmentation

Spatio-temporal modeling of saltatory conduction in neurons using Poisson-Nernst-Planck treatment and estimation of conduction velocity

2022-10-26 · Rahul Gulati, Shiva Rudraraju

Action potential propagation along the axons and across the dendrites is the foundation of the electrical activity observed in the brain and the rest of the central nervous system. Theoretical and numerical modeling of t…

AxonDeepSeg: automatic axon and myelin segmentation from microscopy data using convolutional neural networks

2017-11-03 · Nature Scientific Reports 2018 2 · Aldo Zaimi, Maxime Wabartha, Victor Herman, Pierre-Louis Antonsanti 외

Segmentation of axon and myelin from microscopy images of the nervous system provides useful quantitative information about the tissue microstructure, such as axon density and myelin thickness. This could be used for ins…

Segmentation

The signal synchronization function of myelin

2024-09-25 · Zhuonan Yu, Peijun Qin, Ruibing Sun, Sara Khademi 외

The myelinated axons are widely present in both central and peripheral nervous systems. Its unique compact spiraling structure poses significant challenges to understanding its biological functions and developmental mech…

AxonCallosumEM Dataset: Axon Semantic Segmentation of Whole Corpus Callosum cross section from EM Images

2023-07-05 · Ao Cheng, Guoqiang Zhao, Lirong Wang, Ruobing Zhang

The electron microscope (EM) remains the predominant technique for elucidating intricate details of the animal nervous system at the nanometer scale. However, accurately reconstructing the complex morphology of axons and…

Semantic Segmentation