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Daniel Schultz
Loop profile
ORCID
Publication Activity (10 Years)
Years Active: 2020-2024
Publications (10 Years): 10
Top Topics
Density Functional Theory
Adverse Drug
Candida Albicans
Cell Death
Top Venues
Physical biology
mSphere
Proceedings of the National Academy of Sciences of the United States of America
bioRxiv : the preprint server for biology
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This page only lists publications with an associated author ORCID identifier.
Publications
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Mirjana Stevanovic
,
Joao Pedro Teuber Carvalho
,
Philip Bittihn
,
Daniel Schultz
Dynamical model of antibiotic responses linking expression of resistance genes to metabolism explains emergence of heterogeneity during drug exposures.
Physical biology
21 (3) (2024)
Mirjana Stevanovic
,
Joao Pedro Teuber Carvalho
,
Philip Bittihn
,
Daniel Schultz
Dynamical model of antibiotic responses linking expression of resistance genes to metabolism explains emergence of heterogeneity during drug exposures.
Physical biology
21 (3) (2024)
Mirjana Stevanovic
,
Joao Pedro Teuber Carvalho
,
Philip Bittihn
,
Daniel Schultz
Dynamical model of antibiotic responses linking expression of resistance genes to metabolism explains emergence of heterogeneity during drug exposures.
Physical biology
21 (3) (2024)
Mirjana Stevanovic
,
Joao Pedro Teuber Carvalho
,
Philip Bittihn
,
Daniel Schultz
Dynamical model of antibiotic responses linking expression of resistance genes to metabolism explains emergence of heterogeneity during drug exposures.
Physical biology
21 (3) (2024)
Daniel Schultz
mSphere of Influence: Learning Biology from the Radio.
mSphere
(2023)
Daniel Schultz
mSphere of Influence: Learning Biology from the Radio.
mSphere
8 (1) (2023)
Daniel Schultz
mSphere of Influence: Learning Biology from the Radio.
mSphere
8 (1) (2023)
Daniel Schultz
mSphere of Influence: Learning Biology from the Radio.
mSphere
8 (1) (2023)
John Crow
,
Hao Geng
,
Daniel Schultz
Short-term evolution of antibiotic responses in highly dynamic environments favors loss of regulation.
bioRxiv : the preprint server for biology
(2023)
Caitlin H Kowalski
,
Kaesi A Morelli
,
Daniel Schultz
,
Carey D Nadell
,
Robert A Cramer
Fungal biofilm architecture produces hypoxic microenvironments that drive antifungal resistance.
Proceedings of the National Academy of Sciences of the United States of America
117 (36) (2020)