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.

2,479 results for "Huang Di Nei Jing" — page 64 of 124

ZF_4_14 Verified Oceanography

ZF_4_14 — Harmful Algal Blooms: Red Tides, Toxins, and Eutrophication

Harmful algal blooms (HABs) — rapid proliferations of microscopic algae (phytoplankton) or cyanobacteria that produce toxins, deplete oxygen, or otherwise damage marine ecosystems, fisheries, and human health — are incre

harmful algal bloom HAB red tide algal toxin eutrophication paralytic shellfish poisoning
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
ZF_1_13 Verified Oceanography

ZF_1_13 — Continental Shelves: Submerged Geography and Ice Age Coastlines

Continental shelves — the shallow, gently sloping underwater extensions of continental landmasses — represent some of the most biologically productive, economically valuable, and archaeologically significant terrain on E

continental shelf continental margin submerged landscape ice age coastlines Last Glacial Maximum sea level change
ZF_1_09 Verified Oceanography

ZF_1_09 — Thermohaline Circulation and Ocean Conveyor

The thermohaline circulation (THC) — often called the "global ocean conveyor belt" — is the large-scale, density-driven system of deep ocean currents that redistributes heat, salt, carbon, and nutrients throughout the wo

thermohaline circulation ocean conveyor belt AMOC Atlantic meridional overturning deep water formation abyssal circulation
ZF_1_20 Verified Oceanography

ZF_1_20 — Ocean Stratification

Ocean stratification — the formation of stable density layers in the water column due to gradients in temperature, salinity, and pressure — is one of the most fundamental physical characteristics of the global ocean and

ocean stratification thermocline pycnocline halocline density gradient mixed layer
ZF_1_14 Verified Oceanography

ZF_1_14 — Ocean-Atmosphere Coupling: Heat Exchange, Evaporation, and Weather

The ocean-atmosphere interface — the boundary between Earth's two great fluid envelopes — is the planet's most important energy exchange surface. The ocean absorbs approximately 93% of the excess heat trapped by anthropo

ocean-atmosphere coupling air-sea interaction heat flux latent heat sensible heat evaporation
ZF_1_01 Verified Oceanography

ZF_1_01 — Physical Oceanography: Thermohaline Circulation, Currents, and ENSO

Physical oceanography studies the motion, properties, and dynamics of the global ocean — a system containing 97% of Earth's water, covering 71% of the surface, and storing over 90% of the excess heat from anthropogenic c

thermohaline circulation AMOC ENSO El Niño La Niña ocean currents
ZF_1_02 Verified Oceanography

ZF_1_02 — Tidal Science: Lunar Cycles, Tidal Locking, and Tidal Energy

Tides — the rhythmic rise and fall of ocean surfaces — are among the most predictable natural phenomena on Earth, driven primarily by the gravitational attraction of the Moon (accounting for ~68% of tidal forcing) and th

tidal force tidal locking spring tide neap tide tidal bore tidal energy
ZF_1_18 Verified Oceanography

ZF_1_18 — Mesopelagic Zone Ecology

The mesopelagic zone (200–1,000 m depth) — the ocean's "twilight zone" — is emerging as one of the most ecologically and biogeochemically important yet poorly understood habitats on Earth. [KEY FINDING] Despite receiving

mesopelagic twilight-zone diel-vertical-migration biological-carbon-pump deep-scattering-layer micronekton
ZF_1_15 Verified Oceanography

ZF_1_15 — Wave Physics: Wind Waves, Swell, and Coastal Dynamics

Ocean surface waves are the most visible expression of ocean-atmosphere energy transfer — created by wind blowing across the water surface, they travel across entire ocean basins and dissipate their energy on distant coa

ocean waves wind waves swell wave physics wave height wave period
ZF_1_04 Verified Oceanography

ZF_1_04 — Ocean-Climate Coupling: Paleoceanography

The ocean is Earth's primary climate regulator — absorbing ~93% of the excess heat trapped by greenhouse gases and ~30% of anthropogenic CO₂, storing 50 times more carbon than the atmosphere, and driving glacial-intergla

paleoceanography ice age Milankovitch cycles foraminifera oxygen isotope ocean carbon pump
ZF_1_19 Verified Oceanography

ZF_1_19 — AMOC Collapse Risk

The Atlantic Meridional Overturning Circulation (AMOC) — a system of ocean currents carrying warm surface water northward through the Atlantic and returning cold, dense water at depth — is one of Earth's most critical cl

AMOC Atlantic Meridional Overturning Circulation thermohaline Gulf Stream climate tipping point Rahmstorf
ZF_1_07 Verified Oceanography

ZF_1_07 — Submarine Geology and Ocean Trenches

The submarine geology of the ocean floor encompasses a vast range of geological features — from abyssal plains (the flattest surfaces on Earth, at 3,000–6,000 m depth, covered by fine sediment) to mid-ocean ridges (the l

ocean trench submarine geology abyssal plain mid-ocean ridge subduction Mariana Trench
Z_5_20 Verified Molecular Biology

Z_5_20 — Proteomics: The Complete Protein Landscape of Life

Proteomics — the large-scale study of the complete protein complement (proteome) of a cell, tissue, or organism — emerged in the 1990s as the necessary counterpart to genomics. While the human genome contains ~20,000 pro

proteomics mass spectrometry protein expression protein-protein interactions post-translational modifications two-dimensional gel electrophoresis
Z_5_13 Verified Molecular Biology

Z_5_13 — Molecular Clocks: Timing Evolution at the Sequence Level

Molecular clocks — the observation that DNA and protein sequences accumulate substitutions (mutations that become fixed in a lineage) at approximately regular rates over long periods of evolutionary time, enabling the es

molecular clock neutral theory substitution rate Zuckerkandl Pauling calibration
Z_5_05 Verified Molecular Biology

Z_5_05 — Proteomics: The Global Study of Proteins

Proteomics — the large-scale study of the complete set of proteins (proteome) expressed by a cell, tissue, or organism at a given time — bridges the gap between the genome (static DNA sequence) and the phenotype (observa

proteomics mass spectrometry protein identification two-dimensional gel electrophoresis tandem MS post-translational modification
Z_5_06 Verified Molecular Biology

Z_5_06 — Circulating Cell-Free DNA: Liquid Biopsies and Non-Invasive Diagnostics

Circulating cell-free DNA (cfDNA) — fragments of DNA released into the bloodstream and other body fluids through cell death (apoptosis, necrosis), active secretion, and other mechanisms — has emerged as a revolutionary t

cell-free DNA cfDNA liquid biopsy circulating tumor DNA ctDNA non-invasive prenatal testing
Z_5_02 Verified Molecular Biology

Z_5_02 — Metagenomics and Environmental DNA

Metagenomics — the sequencing and analysis of genetic material recovered directly from environmental samples without culturing organisms — has revealed that the vast majority of Earth's microbial diversity was invisible

metagenomics environmental DNA eDNA shotgun sequencing 16S rRNA amplicon
Z_5_09 Verified Molecular Biology

Z_5_09 — Single-Cell Genomics: Profiling Biology One Cell at a Time

Single-cell genomics — the set of technologies that enable the measurement of DNA sequences, RNA expression, protein levels, or epigenetic states in individual cells rather than bulk populations — has revolutionized biol

single-cell genomics scRNA-seq Human Cell Atlas cell atlas tumor heterogeneity UMAP
Z_5_23 Verified Molecular Biology

Z_5_23 — Gene Drives: CRISPR-Based Inheritance Manipulation and Ecological Engineering

A gene drive is a genetic engineering technology that biases inheritance in sexually reproducing organisms, causing a modified gene to spread through a population at rates far exceeding normal Mendelian inheritance (~50%

gene drive CRISPR mutagenic chain reaction malaria Anopheles population suppression