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Pablo Acera Mateos

Showing results (1-10 of 5) with videos related to

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Briefings in Bioinformatics|May 4, 2023
Concepts and methods for transcriptome-wide prediction of chemical messenger RNA modifications with machine learningPablo Acera Mateos, You Zhou, Kathi Zarnack, et al.
Bioinformatics (Oxford, England)|August 7, 2024
R2Dtool: integration and visualization of isoform-resolved RNA featuresAditya J Sethi, Pablo Acera Mateos, Rippei Hayashi, et al.
Scientific Reports|February 6, 2021
PACIFIC: a lightweight deep-learning classifier of SARS-CoV-2 and co-infecting RNA virusesPablo Acera Mateos, Renzo F Balboa, Simon Easteal, et al.
Biochimie|August 10, 2021
Biochemical and biophysical characterization of the RVB-1/RVB-2 protein complex, the RuvBL/RVB homologues in Neurospora crassaJonatas Erick Maimoni Campanella, Sergio Luiz Ramos Junior, Vanessa Thomaz Rodrigues Kiraly, et al.
NPJ Precision Oncology|May 10, 2025
A novel TRKB-activating internal tandem duplication characterizes a new mechanism of receptor tyrosine kinase activationLauren M Brown, Gabor Tax, Pablo Acera Mateos, et al.
Pageof 1

Showing results (1-10 of 5) with videos related to

Sort By:
Pageof 1
Briefings in Bioinformatics|May 4, 2023
Concepts and methods for transcriptome-wide prediction of chemical messenger RNA modifications with machine learningPablo Acera Mateos, You Zhou, Kathi Zarnack, et al.
Bioinformatics (Oxford, England)|August 7, 2024
R2Dtool: integration and visualization of isoform-resolved RNA featuresAditya J Sethi, Pablo Acera Mateos, Rippei Hayashi, et al.
Scientific Reports|February 6, 2021
PACIFIC: a lightweight deep-learning classifier of SARS-CoV-2 and co-infecting RNA virusesPablo Acera Mateos, Renzo F Balboa, Simon Easteal, et al.
Biochimie|August 10, 2021
Biochemical and biophysical characterization of the RVB-1/RVB-2 protein complex, the RuvBL/RVB homologues in Neurospora crassaJonatas Erick Maimoni Campanella, Sergio Luiz Ramos Junior, Vanessa Thomaz Rodrigues Kiraly, et al.
NPJ Precision Oncology|May 10, 2025
A novel TRKB-activating internal tandem duplication characterizes a new mechanism of receptor tyrosine kinase activationLauren M Brown, Gabor Tax, Pablo Acera Mateos, et al.
Pageof 1