RESEARCH BASE
Search 3,721 documents across 34 fields — every claim tier-rated by evidence
3,633 are the core, quality-scored corpus (34 lettered sections — see How We Work); the remaining 88 are cross-corpus synthesis documents (68 InterDocs, 12 Connections, 8 Theories) also indexed here.
61 results for "gut bacteria" — page 1 of 4
L_5_09 — Human Microbiome Co-Evolution: Ancient Gut Companions
The human microbiome — the trillions of bacteria, archaea, fungi, and viruses that inhabit our bodies, particularly the gastrointestinal tract — is not merely a passive inhabitant but a co-evolved partner that has shaped
X_2_07 — Gut Microbiome and Digestive Health
The gut microbiome — the community of trillions of microorganisms (bacteria, archaea, fungi, viruses) inhabiting the human gastrointestinal tract — has emerged as one of the most transformative areas of biomedical resear
R_5_08 — Human Microbiome: Gut Ecology and Symbiotic Partnerships
The human microbiome — the vast community of trillions of microorganisms (bacteria, archaea, fungi, viruses) that inhabit the human body, primarily the gastrointestinal tract — is now recognized as a critical organ-like
Z_4_01 — Human Microbiome, Gut-Brain Axis, and the Holobiont Concept
The human microbiome — the ~38 trillion microbial cells (bacteria, archaea, fungi, viruses) inhabiting the human body — constitutes a co-evolved ecosystem that profoundly influences health, immunity, metabolism, developm
L_5_13 — The Microbiome-Brain Axis: Gut Bacteria, Mood & Consciousness
The microbiome-gut-brain axis — bidirectional communication between the trillions of gut microorganisms and the central nervous system — has emerged as one of the most significant frontiers in neuroscience and consciousn
Z_5_18 — Gut-Brain Axis: The Microbiome-Nervous System Connection
The gut-brain axis — the bidirectional communication network between the gastrointestinal tract and the central nervous system — has emerged as one of the most transformative concepts in modern biology and medicine. The
ZB_2_18 — Phage-Bacteria Coevolution: Arms Races in the Microbial World
Bacteriophages (phages) — viruses that infect and replicate within bacteria — are the most abundant biological entities on Earth (~10³¹ total particles, outnumbering bacteria ~10:1 in most environments), and their coevol
L_5_01 — Human Microbiome and Co-Evolution
The human microbiome — the aggregate community of microorganisms (bacteria, archaea, fungi, viruses, protists) living on and within the human body — comprises roughly 38 trillion microbial cells (Sender et al., 2016, Cel
L_5_12 — Microbiome-Consciousness Connection: Gut-Brain Axis and Microbial Influence on Mind
The microbiome-gut-brain axis — the bidirectional communication network linking the ~38 trillion microorganisms inhabiting the human gastrointestinal tract with the central nervous system — has emerged as one of the most
R_3_19 — Bacterial Chemotaxis and Signal Transduction
Bacterial chemotaxis — the ability of bacteria to sense chemical gradients in their environment and direct their movement accordingly — is one of the most thoroughly understood signal transduction systems in all of biolo
X_3_24 — Gastroenterology: Microbiome Therapeutics, IBD & Gut-Brain Axis
Gastroenterology — the study and treatment of the digestive system — has undergone a revolution driven by three transformative discoveries: the bacterial etiology of peptic ulcers, the gut microbiome's role in systemic h
ZF_2_14 — Marine Microbiology: Deep-Sea Viruses and Bacterial Ecology
The deep ocean harbors the largest and most diverse microbial ecosystem on Earth — a vast realm of bacteria, archaea, and viruses that drive global biogeochemical cycles, recycle organic matter, and sustain life in condi
Z_5_11 — Microbiome-Host Coevolution: Holobiont Theory, Gut Ecology, and Metabolic Symbiosis
Microbiome-host coevolution refers to the deep, reciprocal evolutionary relationship between multicellular organisms and the complex microbial communities (bacteria, archaea, fungi, viruses) that inhabit their bodies — p
K_4_20 — Non-Neural Learning: Slime Molds, Plants, Bacterial Adaptation
Learning — modifying behavior based on experience — was long thought to require a nervous system. The last twenty years of basal-cognition research have empirically falsified this assumption. Single-celled slime molds (P
ZB_5_27 — Human Microbiome: Gut-Brain Axis and Microbial Ecology
The human body hosts approximately 38 trillion microbial cells — roughly equal to the number of human cells — comprising ~3,000 species of bacteria, archaea, fungi, and viruses, collectively termed the microbiome. The Hu
G_4_17 — Microbiome Archaeology — Ancient Gut and Soil Microbes
Microbiome archaeology — the extraction and analysis of ancient microbial communities from archaeological materials (dental calculus, coprolites, mummified remains, soil sediments, ceramics) — has emerged since ~2012 as
R_1_09 — The Great Oxidation Event: Oxygen, Cyanobacteria, and Earth's Atmospheric Transformation
The Great Oxidation Event (GOE), occurring approximately 2.4–2.1 billion years ago during the Paleoproterozoic, was the most dramatic chemical transformation in Earth's history — atmospheric oxygen rose from trace levels
X_5_17 — Gastroenterology and Microbiome Medicine
Gastroenterology — the study of the gastrointestinal (GI) tract and its diseases — has been revolutionized by two discoveries: the role of Helicobacter pylori in peptic ulcer disease (Barry Marshall and Robin Warren, 198
INTERDOC_55 — Barrier Permeability as Consciousness Gate
The mammalian nervous system is biochemically isolated from the rest of the body and the external environment by a layered system of barriers — the blood-brain barrier (BBB), the intestinal epithelial barrier, the blood-
ZB_2_20 — Human Microbiome & Dysbiosis
The human microbiome — the collective genome of the ~38 trillion microorganisms (bacteria, archaea, fungi, viruses) inhabiting the human body — represents a second genome interacting with host physiology in ways that are
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