KANOUN, BILEL
KANOUN, BILEL
Dipartimento di Ingegneria
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Risultati 1 - 7 di 7 (tempo di esecuzione: 0.009 secondi).
Anisotropic Weighted KS-NLM Filter for Noise Reduction in MRI
2020-01-01 Kanoun, Bilel; Ambrosanio, Michele; Baselice, Fabio; Ferraioli, Giampaolo; Pascazio, Vito; Gomez, Luis
Assessment of GPU-Based Enhanced Wiener Filter on Very High Resolution Images
2020-01-01 Kanoun, B.; Ferraioli, G.; Pascazio, V.
Fast algorithm for despeckling sentinel-1 SAR data
2018-01-01 Kanoun, Bilel; Ferraioli, Giampaolo; Pascazio, Vito; Schirinzi, Gilda
Fast GPU-based enhanced Wiener filter for despeckling SAR Data
2019-01-01 Kanoun, B.; Ferraioli, G.; Pascazio, V.; Schirinzi, G.
SAR image restoration via a NL approach based on the KS test
2018-01-01 Ferraioli, Giampaolo; Kanoun, Bilel; Pascazio, Vito; Schirnzi, Gilda
The use of NL paradigm in SAR applications
2019-01-01 Aghababaee, H.; Kanoun, B.; Vitale, S.; Ferraioli, G.
WKSR-NLM: An Ultrasound Despeckling Filter Based on Patch Ratio and Statistical Similarity
2020-01-01 Ambrosanio, M.; Kanoun, B.; Baselice, F.
Titolo | Data di pubblicazione | Autore(i) | File |
---|---|---|---|
Anisotropic Weighted KS-NLM Filter for Noise Reduction in MRI | 1-gen-2020 | Kanoun, Bilel; Ambrosanio, Michele; Baselice, Fabio; Ferraioli, Giampaolo; Pascazio, Vito; Gomez, Luis | |
Assessment of GPU-Based Enhanced Wiener Filter on Very High Resolution Images | 1-gen-2020 | Kanoun, B.; Ferraioli, G.; Pascazio, V. | |
Fast algorithm for despeckling sentinel-1 SAR data | 1-gen-2018 | Kanoun, Bilel; Ferraioli, Giampaolo; Pascazio, Vito; Schirinzi, Gilda | |
Fast GPU-based enhanced Wiener filter for despeckling SAR Data | 1-gen-2019 | Kanoun, B.; Ferraioli, G.; Pascazio, V.; Schirinzi, G. | |
SAR image restoration via a NL approach based on the KS test | 1-gen-2018 | Ferraioli, Giampaolo; Kanoun, Bilel; Pascazio, Vito; Schirnzi, Gilda | |
The use of NL paradigm in SAR applications | 1-gen-2019 | Aghababaee, H.; Kanoun, B.; Vitale, S.; Ferraioli, G. | |
WKSR-NLM: An Ultrasound Despeckling Filter Based on Patch Ratio and Statistical Similarity | 1-gen-2020 | Ambrosanio, M.; Kanoun, B.; Baselice, F. |