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.

486 results for "stem cell" — page 9 of 25

Verified

TOA_Transparency — Research Methodology & Verification Overview

Theories of Anything is a 3,627-document multi-disciplinary research knowledge base built through a human–AI partnership (Gortiva and Cairn, a Claude-based model from Anthropic). Every document follows an identical templ

research methodology fact-checking source verification quality scoring AI partnership epistemic integrity
ZH_5_19 Verified Archaeoastronomy

ZH_5_19 — History of Astrology: Babylonian Origins to Modern Practice

Astrology — the belief that celestial bodies influence terrestrial events and human character — originated in Mesopotamia (c. 2000–1000 BCE), was systematized into natal horoscopy in the Hellenistic period (c. 1st centur

astrology horoscope zodiac babylonian astrology hellenistic astrology natal chart
ZH_5_20 Verified Archaeoastronomy

ZH_5_20 — Maya Calendar Systems: Cycles of Time and Cosmic Order

The Maya calendar system represents one of the most sophisticated timekeeping frameworks developed by any civilization, integrating multiple interlocking cycles to track sacred, civil, agricultural, and cosmic time over

Maya calendar Long Count Tzolkin Haab Calendar Round Maya astronomy
ZH_2_02 Verified Archaeoastronomy

ZH_2_02 — Indian Astronomical Traditions: Aryabhata to Jantar Mantar

Indian astronomy (Jyotish Shastra) constitutes one of the most mathematically sophisticated astronomical traditions of the pre-modern world, spanning from the Vedic period (c. 1500–500 BCE) through the classical siddhānt

Indian astronomy Jyotish Aryabhata Brahmagupta Bhaskara Varahamihira
ZH_1_13 Verified Archaeoastronomy

ZH_1_13 — Bronze Age Astronomy: Alignments, Calendars, and Knowledge 2000–1000 BCE

The Bronze Age (broadly ~3300–1200 BCE, with regional variation) witnessed a decisive transformation in astronomical knowledge — from the horizon-based, monument-encoded astronomy of the Neolithic to the beginning of sys

Bronze Age Nebra sky disc Stonehenge phase III Minoan astronomy Ugarit MUL.APIN
ZH_1_06 Verified Archaeoastronomy

ZH_1_06 — Zodiac Origins: Babylonian MUL.APIN to Greek Transmission

The zodiac — the division of the ecliptic (the apparent annual path of the Sun against the background stars) into 12 equal 30° segments, each named after a constellation — is a Babylonian invention that became the founda

zodiac zodiac origins ecliptic zodiacal signs constellations Babylonian zodiac
ZH_1_03 Verified Archaeoastronomy

ZH_1_03 — Babylonian MUL.APIN and Mathematical Astronomy

Babylonian astronomy represents the first mathematical science in human history — the first tradition to develop quantitative, predictive models of celestial phenomena based on systematic observation and arithmetic calcu

Babylonian astronomy MUL.APIN mathematical astronomy cuneiform Enuma Anu Enlil planetary theory
C_5_19 Credible Global Traditions

C_5_19 — Chakra System: Energy Center Concepts Across Cultures

The chakra system — a model of the human body containing discrete energy centers (Sanskrit: cakra, "wheel") aligned along the spine — is a foundational concept in Hindu and Buddhist Tantric traditions that has striking c

chakra energy center kundalini qi prana subtle body
ZF_2_09 Verified Oceanography

ZF_2_09 — Fisheries Science and Overfishing

Fisheries science studies the dynamics of fish populations and the management of their exploitation, while overfishing — harvesting fish faster than they can reproduce — has emerged as one of the most pressing threats to

fisheries overfishing maximum sustainable yield bycatch fish stock trawling
ZF_2_15 Credible Oceanography

ZF_2_15 — Jellyfish Ecology: Blooms, Climate Change, and Gelatinous Dominance

Jellyfish (Cnidaria: Scyphozoa, Cubozoa, Hydrozoa, and the distantly related Ctenophora) are among the oldest and most ecologically significant animals in the ocean — with a fossil record extending over 500 million years

jellyfish cnidaria scyphozoa jellyfish bloom gelatinous zooplankton Aurelia aurita
ZF_2_11 Verified Oceanography

ZF_2_11 — Cephalopod Intelligence and Biology

Cephalopods — the class Cephalopoda (~800 living species, including octopuses, squids, cuttlefish, and nautiluses) — are among the most cognitively sophisticated invertebrates on Earth and represent a remarkable case of

cephalopod octopus squid cuttlefish cephalopod intelligence chromatophore
ZF_2_08 Verified Oceanography

ZF_2_08 — Kelp Forests and Seagrass Meadows

Kelp forests and seagrass meadows are the ocean's equivalents of terrestrial forests and grasslands — highly productive underwater ecosystems that provide habitat, food, nursery grounds, carbon sequestration, and coastal

kelp forest seagrass macroalgae Macrocystis Posidonia underwater forest
ZF_5_04 Verified Oceanography

ZF_5_04 — Aquaculture: Fish Farming, Mariculture, and Blue Revolution

Aquaculture — the farming of aquatic organisms including fish, shellfish, crustaceans, and seaweed — has become the fastest-growing food production sector in the world and now provides more seafood for human consumption

aquaculture fish farming mariculture blue revolution salmon farming shrimp farming
ZF_5_08 Verified Oceanography

ZF_5_08 — Coastal Geomorphology: Erosion, Beaches, and Barrier Islands

Coastal geomorphology is the study of landforms at the interface of land and sea — a dynamic zone shaped by the constant interaction of waves, tides, currents, wind, rivers, geology, biology, and increasingly by human ac

coastal geomorphology coastal erosion beach barrier island sea cliff longshore drift
ZF_4_09 Verified Oceanography

ZF_4_09 — Seagrass and Coastal Carbon Sequestration (Blue Carbon)

Blue carbon refers to the carbon captured and stored by coastal and marine ecosystems — primarily seagrass meadows, mangrove forests, and salt marshes — which sequester carbon at rates per unit area far exceeding terrest

blue carbon seagrass Posidonia eelgrass Zostera coastal carbon
Z_5_14 Verified Molecular Biology

Z_5_14 — Spatial Transcriptomics: Gene Expression in Tissue Context

Spatial transcriptomics — technologies that measure gene expression while preserving the spatial location of transcripts within intact tissue sections — resolves a fundamental limitation of conventional single-cell RNA s

spatial transcriptomics Visium MERFISH seqFISH tissue architecture gene expression
Z_5_01 Verified Molecular Biology

Z_5_01 — CRISPR Applications and Genetic Engineering

CRISPR-Cas9 (Clustered Regularly Interspaced Short Palindromic Repeats) is a revolutionary gene-editing technology adapted from a bacterial immune defense system, enabling precise, programmable modification of DNA in vir

CRISPR Cas9 gene editing genetic engineering CRISPR-Cas9 guide RNA
Z_2_15 Verified Molecular Biology

Z_2_15 — Future of Genomics and Personalized Medicine

Genomics is undergoing a transition from research tool to clinical infrastructure. The cost of whole-genome sequencing (WGS) has plummeted from $2.7 billion (Human Genome Project, 1990–2003) to ~$200 per genome (Illumina

future genomics personalized medicine precision medicine polygenic risk scores whole genome sequencing newborn screening
Z_2_04 Verified Molecular Biology

Z_2_04 — Genetic Disorders and Inborn Errors of Metabolism

Genetic disorders — diseases caused by mutations in single genes (monogenic) or chromosomal abnormalities — affect ~3–5% of live births and collectively represent thousands of distinct conditions catalogued in the Online

genetic disorder inborn error metabolism Mendelian disease sickle cell cystic fibrosis
Z_2_07 Verified Molecular Biology

Z_2_07 — Genetics of Disease Resistance

Infectious disease has been the most powerful selective force shaping the human genome, leaving signatures across thousands of loci. The best-understood example is sickle cell disease (HbS, Glu6Val in HBB): heterozygous

disease resistance natural selection pathogen-driven selection sickle cell malaria resistance HbS