RESEARCH BASE

Search 3,721 documents across 34 fields — every claim tier-rated by evidence

3,721 Documents 34 Sections 43,625 Citations 34,852 Keywords Indexed 4 Evidence Tiers

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.

104 results for "major histocompatibility complex" — page 1 of 6

Z_2_11 Verified Molecular Biology

Z_2_11 — Genetics of Immunity and MHC Diversity

The major histocompatibility complex (MHC) — known as the human leukocyte antigen (HLA) system in humans — is the most polymorphic gene region in the human genome, encoding cell-surface glycoproteins essential for adapti

major histocompatibility complex MHC HLA human leukocyte antigen adaptive immunity antigen presentation
Z_2_01 Verified Molecular Biology

Z_2_01 — HLA System & Archaic Immune Inheritance

The Human Leukocyte Antigen (HLA) system is the most polymorphic region of the human genome, encoding cell-surface proteins critical to adaptive immune function. Located on chromosome 6p21.3, the Major Histocompatibility

HLA human leukocyte antigen MHC major histocompatibility complex archaic introgression Denisovan
ZB_2_06 Verified Ecology & Biology

ZB_2_06 — Immune System Evolution: From Innate to Adaptive Defense

The immune system represents one of evolution's most complex adaptive innovations — a multi-layered defense system that distinguishes self from non-self and remembers past encounters. All multicellular organisms possess

immune system innate immunity adaptive immunity T cell B cell antibody
L_3_09 Verified Genetics & Origins

L_3_09 — HLA Diversity and Immune System Evolution

The Human Leukocyte Antigen (HLA) system — the human version of the Major Histocompatibility Complex (MHC) found in all jawed vertebrates — is the most polymorphic gene region in the entire human genome. Located on chrom

HLA MHC major histocompatibility complex immune diversity balancing selection antigen presentation
R_3_13 Verified Biology & Evolution

R_3_13 — Evolution of the Immune System

The immune system is one of evolution's most elaborate and costly creations — vertebrate adaptive immunity alone employs V(D)J recombination to generate over 10¹¹ distinct antibody specificities from fewer than 400 gene

immune system innate immunity adaptive immunity immunoglobulin T cell B cell
M_5_22 Verified Forbidden Archaeology

M_5_22 — Mesolithic Europe: Hunter-Gatherer Complexity Before Agriculture

The Mesolithic (Middle Stone Age, ~10,000–5000 BCE in Europe) — the period between the end of the last Ice Age and the arrival of farming — has been traditionally treated as a brief, uninteresting interlude between the d

mesolithic hunter-gatherer forager europe star carr lepenski vir
W_2_27 Verified World Civilizations

W_2_27 — Jōmon Civilization: Japan's 14,000-Year Pre-Agricultural Complex Society

The Jōmon culture of Japan (~14,000–300 BCE) represents one of the most extraordinary challenges to conventional models of human development. [KEY FINDING] Jōmon people produced the world's oldest known pottery (radiocar

jōmon japan cord-marked pottery hunter-gatherer complexity neolithic dogu
K_5_15 Verified Consciousness

K_5_15 — Neural Fractals & the Edge of Chaos: Brain Criticality and Complexity

The brain is poised at a critical point between order and chaos — and its fractality is not an accident but a functional necessity. In 2003, John Beggs and Dietmar Plenz published one of neuroscience's landmark papers: t

neural fractals edge of chaos brain criticality neuronal avalanches Beggs and Plenz 1/f EEG noise
ZC_2_18 Credible Social Science

ZC_2_18 — Societal Collapse — Tainter's Complexity Theory

Joseph Tainter's The Collapse of Complex Societies (1988) proposed one of the most influential theoretical frameworks for understanding why civilizations fail: societies collapse when the marginal returns on increasing c

societal collapse Joseph Tainter complexity diminishing returns marginal productivity Roman Empire
G_3_11 Verified Modern Frameworks

G_3_11 — Information Theory and Biological Complexity

Information theory, founded by Claude Shannon (1948, A Mathematical Theory of Communication), provides a rigorous mathematical framework for quantifying information content, communication capacity, and complexity — conce

information theory Shannon entropy Kolmogorov complexity algorithmic information biological information DNA information content
G_3_16 Credible Modern Frameworks

G_3_16 — Complexity Theory and Civilizational Collapse

Complexity theory — drawn from physics, mathematics, ecology, and information theory — provides a powerful framework for understanding why civilizations collapse: not as the result of a single catastrophic event, but as

complexity collapse civilization complex systems emergence resilience
G_2_04 Verified Modern Frameworks

G_2_04 — Complexity Economics and Ancient Trade Systems

Complexity economics — the application of complex systems theory, non-linear dynamics, and agent-based modeling to economic phenomena — provides a powerful modern framework for understanding ancient and premodern trade s

complexity economics Santa Fe approach Brian Arthur agent-based economics increasing returns path dependence
ZD_1_13 Verified Information & Computation

ZD_1_13 — Kolmogorov Complexity and Algorithmic Information Theory

Kolmogorov complexity (also called algorithmic complexity, descriptive complexity, or program-size complexity) — the length of the shortest computer program (on a fixed universal Turing machine) that produces a given str

Kolmogorov complexity algorithmic information theory algorithmic randomness incompressibility minimal description length Solomonoff
ZD_5_18 Verified Information & Computation

ZD_5_18 — Complexity Science: The Santa Fe Institute and the Science of Emergence

Complexity science — the interdisciplinary study of systems composed of many interacting components whose collective behavior cannot be predicted from individual parts — emerged as a distinct field in the 1980s, catalyze

complexity science santa fe institute emergence complex adaptive systems self-organization agent-based modeling
ZD_4_10 Credible Information & Computation

ZD_4_10 — Complexity Theory in Biology — Kauffman, Wolfram, Edge of Chaos

The application of complexity theory to biology — the study of how complex, adaptive, self-organizing structures and behaviors emerge in living systems from the interactions of simpler components — has been one of the mo

complexity edge of chaos self-organization emergence Kauffman Wolfram
W_4_04 Verified World Civilizations

W_4_04 — Mississippian Culture — Cahokia, Mound Builders, and the Southeastern Ceremonial Complex

Cahokia, located near present-day East St. Louis, Illinois, was the largest pre-Columbian settlement north of Mexico, reaching a peak population of 20,000 or more around 1050-1200 CE. The site features Monks Mound — the

Cahokia Mississippian culture mound builders Monks Mound Southeastern Ceremonial Complex SECC
E_1_11 Credible Cataclysms & Chronology

E_1_11 — Comet Encke and the Taurid Complex: Recurring Cosmic Threat

Comet 2P/Encke — a short-period comet with the shortest known orbital period of any bright comet (3.3 years) — is the most prominent surviving fragment of a much larger cometary body whose progressive disintegration over

Comet Encke Taurid complex Taurid meteor stream Beta Taurids giant comet coherent catastrophism
G_3_06 Verified Modern Frameworks

G_3_06 — Systems Collapse and Complexity Theory Applied to Civilizations

This document examines Systems Collapse and Complexity Theory Applied to Civilizations, a topic within the Modern Frameworks research area. Key areas of investigation include Tainter's Foundational Thesis, The Western Ro

systems collapse complexity theory Joseph Tainter diminishing returns Peter Turchin cliodynamics
G_2_01 Verified Modern Frameworks

G_2_01 — Network Science and Complex Systems Applied to Ancient Trade

Network science—the mathematical study of complex interconnected systems—has emerged as a powerful tool for understanding ancient trade, cultural transmission, and civilizational collapse. By modeling ancient trade route

network science complex systems scale-free networks small-world collapse cascade agent-based modeling
ZD_1_05 Verified Information & Computation

ZD_1_05 — Computational Complexity: P vs NP and the Limits of Efficient Computation

Computational complexity theory classifies problems not by whether they can be solved, but by how efficiently they can be solved — and its central open question, P vs NP, is one of the seven Clay Millennium Prize Problem

computational complexity P vs NP NP-completeness complexity classes polynomial time Turing machines