Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by Crossref.
Letourneau, Jeffrey
Holmes, Zachary C
Dallow, Eric P
Durand, Heather K
Jiang, Sharon
Carrion, Verónica M
Gupta, Savita K
Mincey, Adam C
Muehlbauer, Michael J
Bain, James R
and
David, Lawrence A
2022.
Ecological memory of prior nutrient exposure in the human gut microbiome.
The ISME Journal,
Vol. 16,
Issue. 11,
p.
2479.
Wissel, E.
Leon, L.
and
Tipton, L.
2022.
Opportunities for growth in the growing field of psychobiotics.
Beneficial Microbes,
Vol. 13,
Issue. 6,
p.
445.
Liu, Yang
Huang, Minyi
Wang, Yujiao
Duan, Renyan
Guo, Jun
Cao, Xiaohong
and
Xu, Xiang
2022.
Short-term continuous and pulse Pb exposure causes negative effects on skin histomorphological structure and bacterial composition of adult Pelophylax nigromaculatus.
Environmental Science and Pollution Research,
Vol. 29,
Issue. 37,
p.
56592.
Rodriguez, Cynthia I.
Isobe, Kazuo
Martiny, Jennifer B. H.
and
Cope, Emily K.
2024.
Short-term dietary fiber interventions produce consistent gut microbiome responses across studies.
mSystems,
Vol. 9,
Issue. 6,
Letourneau, Jeffrey
Carrion, Verónica M
Zeng, Jun
Jiang, Sharon
Osborne, Olivia W
Holmes, Zachary C
Fox, Aiden
Epstein, Piper
Tan, Chin Yee
Kirtley, Michelle
Surana, Neeraj K
and
David, Lawrence A
2024.
Interplay between particle size and microbial ecology in the gut microbiome.
The ISME Journal,
Vol. 18,
Issue. 1,
Wang, Shuaiqi
Ju, Dianwen
and
Zeng, Xian
2024.
Mechanisms and Clinical Implications of Human Gut Microbiota-Drug Interactions in the Precision Medicine Era.
Biomedicines,
Vol. 12,
Issue. 1,
p.
194.
Target article
Microbiota-gut-brain research: A critical analysis
Related commentaries (19)
A call for mapping the development of the microbiota-gut-brain axis during human infancy
Beyond a gut feeling: How the immune system impacts the effect of gut microbiota in neurodevelopment
Combining integrated systems-biology approaches with intervention-based experimental design provides a higher-resolution path forward for microbiome research
Increasing reproducibility and interpretability of microbiota-gut-brain studies on human neurocognition and intermediary microbial metabolites
Inter-individual variation shapes the human microbiome
Microbiota-gut-brain research: A plea for an interdisciplinary approach and standardization
Neuropeptide-like signaling in the microbiota-gut-brain axis
Neurotropic enteroviruses co-opt “fair-weather-friend” commensal gut microbiota to drive host infection and central nervous system disturbances
Nourishing the gut microbiota: The potential of prebiotics in microbiota-gut-brain axis research
On the potential distortions of highly cited papers in emerging research fields: A critical appraisal
Practical guidelines for gut microbiome analysis in microbiota-gut-brain axis research
Putting microbiota-gut-brain research in a systemic developmental context: Focus on breast milk
Scientific claims are constitutive of common sense about health
Stress and microbiota: Between biology and psychology
The contribution of microbiology to neuroscience: More complex than it seems?
The parent-offspring microbiome and neurobehavioral development
Why a developmental cognitive neuroscience approach may be key for future-proofing microbiota-gut-brain research
Why don't probiotics work?
Why microbes, not microbiomes, are better causal explanations in gut-brain research
Author response
Causal clarity and deeper dimensions in microbiota-gut-brain research