Gut microbiota maturation during early human life induces enterocyte proliferation via microbial metabolites is a research paper published in BMC Microbiology (2020). On theSindex it has a DataRank of 0.557. It has been cited 40 times.
Scored on demand from live citation data
Linked data & code
DataRank reads this dataset's downstream impact straight off the citation graph — no black box, no proprietary weighting. How is this computed?
FAIR checklist signals are shown for context only and do not affect DataRank scoring.
We only score data papers we can read in full — never from an abstract alone.
Base Score Contribution
0.557
From this paper's citation signal
Citation Network Contribution
0
Citation network not refreshed for this result
This paper's DataRank is currently driven only by its base citation score. Citation network data was not refreshed for this result.
Learn more about DataRank methodology →National Institutes of Health
Grant: R01DK073338
National Institutes of Health
Grant: 5R01DK073338-09
Role of Bacteria in Colitis-Associated Colon Cancer
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 4 of Maturation state of colonization sites promotes symbiotic resiliency in the Euprymna scolopes-Vibrio fischeri partnership
Additional file 3 of Maturation state of colonization sites promotes symbiotic resiliency in the Euprymna scolopes-Vibrio fischeri partnership
Additional file 5 of Maturation state of colonization sites promotes symbiotic resiliency in the Euprymna scolopes-Vibrio fischeri partnership
Additional file 5 of Maturation state of colonization sites promotes symbiotic resiliency in the Euprymna scolopes-Vibrio fischeri partnership
Additional file 2 of Maturation state of colonization sites promotes symbiotic resiliency in the Euprymna scolopes-Vibrio fischeri partnership
Additional file 4 of Maturation state of colonization sites promotes symbiotic resiliency in the Euprymna scolopes-Vibrio fischeri partnership
Additional file 6 of Maturation state of colonization sites promotes symbiotic resiliency in the Euprymna scolopes-Vibrio fischeri partnership
Additional file 3 of Maturation state of colonization sites promotes symbiotic resiliency in the Euprymna scolopes-Vibrio fischeri partnership
Additional file 6 of Maturation state of colonization sites promotes symbiotic resiliency in the Euprymna scolopes-Vibrio fischeri partnership
Additional file 2 of Maturation state of colonization sites promotes symbiotic resiliency in the Euprymna scolopes-Vibrio fischeri partnership
Additional file 1 of Gut microbiota maturation during early human life induces enterocyte proliferation via microbial metabolites
Additional file 2 of Gut microbiota maturation during early human life induces enterocyte proliferation via microbial metabolites
Additional file 1 of Gut microbiota maturation during early human life induces enterocyte proliferation via microbial metabolites
Additional file 4 of Gut microbiota maturation during early human life induces enterocyte proliferation via microbial metabolites
Additional file 2 of Gut microbiota maturation during early human life induces enterocyte proliferation via microbial metabolites
Additional file 3 of Gut microbiota maturation during early human life induces enterocyte proliferation via microbial metabolites
Additional file 4 of Gut microbiota maturation during early human life induces enterocyte proliferation via microbial metabolites
Additional file 3 of Gut microbiota maturation during early human life induces enterocyte proliferation via microbial metabolites
Additional file 5 of Gut microbiota maturation during early human life induces enterocyte proliferation via microbial metabolites
Additional file 5 of Gut microbiota maturation during early human life induces enterocyte proliferation via microbial metabolites