Context. Filaments are ubiquitous in the Galaxy, and they host star formation. Detecting them in a reliable way is therefore key towards our understanding of the star formation process. Aims: We explore whether supervised machine learning can identify filamentary structures on the whole Galactic plane. Methods: We used two versions of UNet-based networks for image segmentation. We used H2 column density images of the Galactic plane obtained with Herschel Hi-GAL data as input data. We trained the UNet-based networks with skeletons (spine plus branches) of filaments that were extracted from these images, together with background and missing data masks that we produced. We tested eight training scenarios to determine the best scenario for ou...
We present a novel method for identifying cosmic web filaments using the IllustrisTNG (TNG100) cosmo...
Filament identification became a key step to tackling fundamental problems in various fields of Astr...
Context. Filamentary structures are ubiquitous in the interstellar medium. Investigating their conne...
International audienceContext. Filaments are ubiquitous in the Galaxy, and they host star formation....
Context. Filaments are ubiquitous in the Galaxy, and they host star formation. Detecting them in a r...
We present an innovative method called FilExSeC (Filaments Extraction, Selection and Classification)...
Understanding star formation is key to understand galaxy evolution. Observations collected in the He...
We present an innovative method called FilExSeC (Filaments Extraction, Selection and Classification)...
Observations of molecular clouds reveal a complex structure, with gas and dust often arranged in fil...
We present an innovative method called FilExSeC (Filaments Extraction, Selection and Classificatio...
Observations of molecular clouds reveal a complex structure, with gas and dust often arranged in fil...
The recent data collected by Herschel have confirmed that interstellar structures with a filamentary...
Context. Characterization of the internal structure of the superclusters of galaxies (walls, filamen...
Throughout the Milky Way, molecular clouds typically appear filamentary, and mounting evidence indic...
Context. The main feature of the spatial large-scale galaxy distribution is an intricate network of ...
We present a novel method for identifying cosmic web filaments using the IllustrisTNG (TNG100) cosmo...
Filament identification became a key step to tackling fundamental problems in various fields of Astr...
Context. Filamentary structures are ubiquitous in the interstellar medium. Investigating their conne...
International audienceContext. Filaments are ubiquitous in the Galaxy, and they host star formation....
Context. Filaments are ubiquitous in the Galaxy, and they host star formation. Detecting them in a r...
We present an innovative method called FilExSeC (Filaments Extraction, Selection and Classification)...
Understanding star formation is key to understand galaxy evolution. Observations collected in the He...
We present an innovative method called FilExSeC (Filaments Extraction, Selection and Classification)...
Observations of molecular clouds reveal a complex structure, with gas and dust often arranged in fil...
We present an innovative method called FilExSeC (Filaments Extraction, Selection and Classificatio...
Observations of molecular clouds reveal a complex structure, with gas and dust often arranged in fil...
The recent data collected by Herschel have confirmed that interstellar structures with a filamentary...
Context. Characterization of the internal structure of the superclusters of galaxies (walls, filamen...
Throughout the Milky Way, molecular clouds typically appear filamentary, and mounting evidence indic...
Context. The main feature of the spatial large-scale galaxy distribution is an intricate network of ...
We present a novel method for identifying cosmic web filaments using the IllustrisTNG (TNG100) cosmo...
Filament identification became a key step to tackling fundamental problems in various fields of Astr...
Context. Filamentary structures are ubiquitous in the interstellar medium. Investigating their conne...