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.

2,551 results for "Quan Van Le" — page 85 of 128

ZB_5_29 Verified Ecology & Biology

ZB_5_29 — Biomineralization: Biological Crystal Engineering from Shells to Bones

Biomineralization — the process by which living organisms produce minerals — is one of the most remarkable achievements of biological engineering, responsible for structures ranging from the calcium carbonate shells of m

biomineralization calcium carbonate hydroxyapatite nacre bone mineralization magnetotaxis
ZB_5_01 Verified Ecology & Biology

ZB_5_01 — Biological Rhythms Beyond Circadian

While circadian (~24-hour) rhythms are the best-studied biological oscillations (2017 Nobel Prize to Hall, Rosbash, Young), life is permeated by rhythms operating across all timescales — from millisecond neural oscillati

biological rhythms ultradian rhythms infradian rhythms circannual rhythms tidal rhythms lunar rhythms
ZB_5_24 Verified Ecology & Biology

ZB_5_24 — Bioluminescence: Light Production in Living Systems

Bioluminescence — the production of light by living organisms through chemical reactions — is one of nature's most widespread and ancient phenomena. An estimated 76% of deep-sea organisms produce light, and bioluminescen

bioluminescence luciferin luciferase deep sea firefly dinoflagellate
ZB_5_28 Verified Ecology & Biology

ZB_5_28 — Photosynthesis: Light Harvesting, Carbon Fixation, and the Bioenergetic Foundation of Life

Photosynthesis — the conversion of light energy into chemical energy by living organisms — is the bioenergetic foundation of virtually all life on Earth, fixing approximately 120 billion tonnes of carbon annually and pro

photosynthesis chlorophyll Calvin cycle light reactions photosystem carbon fixation
ZB_5_03 Verified Ecology & Biology

ZB_5_03 — Microbiome Ecology

The microbiome — the collective genomes of the trillions of microorganisms (bacteria, archaea, fungi, viruses) inhabiting a host organism or environment — has emerged as one of the most transformative research areas in 2

microbiome gut microbiota gut-brain axis dysbiosis Human Microbiome Project metagenomics
ZB_5_02 Verified Ecology & Biology

ZB_5_02 — Biological Networks and Systems Biology

Systems biology investigates how biological function emerges from the collective interactions of molecular components — genes, proteins, metabolites, and signaling molecules — organized into networks. Rather than studyin

systems biology biological networks gene regulatory networks protein-protein interactions metabolic networks signaling pathways
ZB_5_23 Verified Ecology & Biology

ZB_5_23 — Bioacoustics & Animal Communication

Bioacoustics — the study of biological sound production, transmission, and reception — reveals a hidden world of communication systems of extraordinary sophistication. Humpback whale songs contain hierarchical structure

bioacoustics animal communication whale song birdsong echolocation soundscape ecology
ZB_4_10 Verified Ecology & Biology

ZB_4_10 — Cave Ecology: Life in Perpetual Darkness

Cave ecology (speleobiology) investigates life in subterranean environments — caves, groundwater aquifers, lava tubes, and interstitial spaces — habitats characterized by permanent darkness, near-constant temperature, hi

cave ecology speleobiology troglobite stygobite troglobite adaptations chemolithoautotrophy
ZB_4_08 Verified Ecology & Biology

ZB_4_08 — Rewilding and Ecological Restoration

Rewilding is an emerging approach to conservation that aims to restore self-sustaining, self-regulating ecosystems by reintroducing missing species — particularly large vertebrates and ecological engineers — and allowing

rewilding ecological restoration trophic rewilding Pleistocene rewilding ecosystem recovery reintroduction
ZB_4_15 Credible Ecology & Biology

ZB_4_15 — Urban Wildlife Genomics: Rapid Evolution in the Anthropocene City

Cities — covering only ~3% of Earth's land surface but housing >55% of humanity — are emerging as powerful natural laboratories for studying rapid evolution in real time. Urban wildlife genomics investigates how the extr

urban-evolution wildlife-genomics urban-adaptation heat-island pollution-adaptation urban-speciation
ZB_4_03 Verified Ecology & Biology

ZB_4_03 — Desert Biology and Xerophytes

Deserts — regions receiving <250 mm of annual precipitation — cover ~33% of Earth's land surface and harbor organisms with some of the most remarkable adaptations in biology. Desert organisms face extreme challenges: wat

desert ecology xerophyte arid adaptation CAM photosynthesis water conservation succulent
ZB_3_23 Verified Ecology & Biology

ZB_3_23 — Coral Reef Ecosystem Dynamics

Coral reefs are among Earth's most biodiverse and economically valuable ecosystems, occupying less than 0.1% of the ocean floor yet supporting approximately 25% of all marine species (~830,000 species). Built over millen

coral reef bleaching zooxanthellae symbiosis ocean acidification Great Barrier Reef
ZB_3_07 Verified Ecology & Biology

ZB_3_07 — Keystone Species and Trophic Cascades

A keystone species exerts an ecological influence disproportionate to its abundance — its removal causes cascading structural changes through the ecosystem. The concept was introduced by Robert Paine (1966, 1969) based o

keystone species trophic cascade top-down regulation food web apex predator ecological engineer
ZB_3_04 Verified Ecology & Biology

ZB_3_04 — Ecological Succession

Ecological succession — the process of community change over time following a disturbance or the creation of new habitat — is one of ecology's oldest and most studied concepts. Primary succession occurs on newly exposed

ecological succession primary succession secondary succession climax community pioneer species sere
ZB_3_06 Verified Ecology & Biology

ZB_3_06 — Fire Ecology

Fire ecology studies fire as a natural ecological process — a fundamental disturbance agent that shapes vegetation structure, species composition, nutrient cycling, and landscape patterns across much of Earth's terrestri

fire ecology wildfire prescribed burn fire regime pyrophyte serotiny
ZB_3_09 Verified Ecology & Biology

ZB_3_09 — Mutualism and Cooperation in Nature

Mutualism — an interspecific interaction in which both partners benefit — is one of the most important ecological relationships on Earth, underpinning ecosystem function from coral reefs to forests to the human gut. The

mutualism symbiosis cooperation reciprocal altruism cleaner fish mycorrhiza
ZB_3_05 Verified Ecology & Biology

ZB_3_05 — Seed Banks Dormancy and Germination

Seed dormancy — the inability of a viable seed to germinate under otherwise favorable conditions — is a critical survival strategy allowing plants to persist through unfavorable periods and disperse germination across ti

seed dormancy seed bank germination Svalbard Global Seed Vault ex situ conservation viability
ZB_3_17 Verified Ecology & Biology

ZB_3_17 — Invasive Species Ecology and Biological Invasions

Biological invasions — the introduction, establishment, spread, and impact of species outside their native range — are among the most significant drivers of global biodiversity loss, ecosystem change, and economic damage

invasive-species biological-invasion enemy-release novel-ecosystem ballast-water cane-toad
ZB_3_01 Verified Ecology & Biology

ZB_3_01 — Pollination Ecology: Plant-Pollinator Coevolution and Seed Dispersal

The mutualism between flowering plants and their pollinators is one of the most consequential partnerships in the history of life. Approximately 87.5% of wild flowering plants and 75% of food crops depend on animal polli

pollination pollinators bees butterflies hummingbirds wind pollination
ZB_3_24 Verified Ecology & Biology

ZB_3_24 — Phenological Mismatch: When Ecological Timing Goes Wrong

Phenological mismatch — the decoupling of historically synchronized ecological events due to differential responses to environmental change — has emerged as one of the most consequential ecological impacts of anthropogen

phenological mismatch phenology climate change spring advancement trophic mismatch breeding timing