Multi-scale mechanistic modelling of the host defence in invasive aspergillosis reveals leucocyte activation and iron acquisition as drivers of infection outcome is a research paper published in Journal of The Royal Society Interface (2022). On theSindex it has a DataRank of 0. It has been cited 22 times.
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National Institute of General Medical Sciences
Grant: 1R01GM127909-01
Control of heterogeneous microbial communities using model-based multi-objective optimization
National Institute of Biomedical Imaging and Bioengineering
Grant: 1U01EB024501-01
Modular design of multiscale models, with an application to the innate immune response to fungal respiratory pathogens.
National Science Foundation
Grant: CBET-1750183
National Institute of Allergy and Infectious Diseases
Grant: 1 R01AI135128-01
National Institutes of Health
Grant: T90-DE021989
American Heart Association
Grant: 18TPA34170486
NIBIB NIH HHS
Grant: U01 EB024501
NIGMS NIH HHS
Grant: R01 GM127909
NIAID NIH HHS
Grant: R01 AI135128
NIDCR NIH HHS
Grant: T90 DE021989
National Science Foundation
Grant: 1750183
EAGER: Modular design of multiscale models, with an application to the innate immune response to fungal respiratory pathogens
National Institutes of Health
Grant: 5R01AI135128-04
Multiscale modeling of the battle over iron in invasive lung infection
National Institutes of Health
Grant: 5T90DE021989-04
Skeletal, Craniofacial and Oral Biology Training Grant
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
The Pulmonary Agent-based Infection simulator (PAI): A Multi-Scale Agent-Based Model of Pulmonary Host-Pathogen Interactions
The Pulmonary Agent-based Infection simulator (PAI): A Multi-Scale Agent-Based Model of Pulmonary Host-Pathogen Interactions
Supplementary Material from Multi-scale mechanistic modelling of the host defense in invasive aspergillosis reveals leucocyte activation and iron acquisition as drivers of infection outcome
Supplementary Material from Multi-scale mechanistic modelling of the host defense in invasive aspergillosis reveals leucocyte activation and iron acquisition as drivers of infection outcome
Supplementary material from "Multi-scale mechanistic modelling of the host defense in invasive aspergillosis reveals leucocyte activation and iron acquisition as drivers of infection outcome"
Supplementary Material 3 from Multi-scale mechanistic modelling of the host defense in invasive aspergillosis reveals leucocyte activation and iron acquisition as drivers of infection outcome
Supplementary material from "Multi-scale mechanistic modelling of the host defense in invasive aspergillosis reveals leucocyte activation and iron acquisition as drivers of infection outcome"
Supplementary Material 3 from Multi-scale mechanistic modelling of the host defense in invasive aspergillosis reveals leucocyte activation and iron acquisition as drivers of infection outcome
Supplementary Material 2 from Multi-scale mechanistic modelling of the host defense in invasive aspergillosis reveals leucocyte activation and iron acquisition as drivers of infection outcome
Supplementary Material 2 from Multi-scale mechanistic modelling of the host defense in invasive aspergillosis reveals leucocyte activation and iron acquisition as drivers of infection outcome