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0
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Pocket-PROTACs: an interpretable pocket-aware deep learning framework for predicting PROTAC-induced protein degradation.
(academic.oup.com)
|
Chen K
…
Deng L
Bioinformatics
2026-08-01
|
#deep learning
#protein degradation
#drug design
#structure prediction
|
|
0
|
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miRBind2 enables sequence-only prediction of miRNA binding and transcript repression.
(academic.oup.com)
|
Cechak D
…
Alexiou P
Bioinformatics
2026-08-01
|
#microrna
#prediction
#deep learning
#gene regulation
#sequence analysis
|
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0
|
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Mitigating Goodhart's law in epitope-conditioned TCR generation using plug-and-play reward designs.
(academic.oup.com)
|
Zhang P
…
Lee H
Bioinformatics
2026-08-01
|
#immunotherapy
#deep learning
#protein design
#binding prediction
|
|
0
|
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Deep learning-assisted mapping of dendritic spines using sequential 2D two-photon calcium imaging.
(linkinghub.elsevier.com)
|
Cupolillo D
…
Barberis A
iScience
2026-08-01
|
#imaging
#dendritic
#deep learning
#calcium
#synaptic
|
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0
|
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Chiron3D: an interpretable deep learning framework for understanding the DNA code of chromatin looping.
(academic.oup.com)
|
Honig S
…
Boeva V
Bioinformatics
2026-08-01
|
#chromatin
#deep learning
#gene regulation
#sequence prediction
#interpretability
|
|
0
|
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Twelve quick tips for applying deep learning to animal sounds.
(journals.plos.org)
|
Ghani B
…
Stowell D
PLOS Computational Biology
2026-08-01
|
#machine learning
#deep learning
#bioacoustics
#species-identification
#ecology
|
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0
|
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Semi-supervised learning for automated perineural invasion detection in multi-organ H&E whole slide images.
(academic.oup.com)
|
Alkhan A
…
Culhane AC
Bioinformatics
2026-08-01
|
#deep learning
#pathology
#cancer
#image analysis
#histopathology
|