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.

3,721 results for "salvinorin A" — page 140 of 187

R_4_14 Verified Biology & Evolution

R_4_14 — Evolution of Hearing: From Vibration Sensing to Complex Auditory Systems

The evolution of hearing — the ability to detect pressure waves propagating through air, water, or solid substrates — represents one of the most remarkable transformations in vertebrate history. The story begins with anc

hearing auditory evolution cochlea basilar membrane ear ossicle tympanic membrane
R_4_12 Verified Biology & Evolution

R_4_12 — Mimicry: Batesian, Müllerian, and Aggressive Deception

Mimicry — the resemblance of one organism (the mimic) to another (the model) or to an environmental feature, evolved to deceive a third party (the signal receiver, typically a predator) — is one of the most elegant demon

mimicry Batesian mimicry Müllerian mimicry aggressive mimicry aposematism warning coloration
R_4_16 Verified Biology & Evolution

R_4_16 — Magnetoreception: Biological Magnetic Sensing

Magnetoreception — the ability of organisms to detect Earth's magnetic field and use it for orientation and navigation — is one of the most enigmatic sensory modalities in biology, documented in diverse taxa including mi

magnetoreception magnetic sense cryptochrome radical pair mechanism magnetite Cry4
R_4_15 Verified Biology & Evolution

R_4_15 — Insect Evolution: Flight, Metamorphosis, and Mega-Diversity

Insects (class Insecta) are the most species-rich group of organisms on Earth — with over 1 million described species and an estimated 5–10 million total, they account for approximately 80% of all known animal species. T

insect insect evolution flight wing pterygota metamorphosis
R_4_09 Verified Biology & Evolution

R_4_09 — Parasitism and Host-Parasite Coevolution

Parasitism — a symbiotic relationship in which one organism (the parasite) benefits at the expense of another (the host) — is arguably the most common lifestyle on Earth. By some estimates, over 40% of all described spec

parasitism host-parasite coevolution Red Queen arms race Plasmodium malaria
R_4_13 Verified Biology & Evolution

R_4_13 — Evolution of Sleep: Why Organisms Rest

Sleep — a reversible state of reduced awareness, diminished responsiveness, and characteristic neural activity — is found across virtually all animals with a nervous system, from C. elegans (which exhibits a quiescent st

sleep evolution of sleep REM sleep NREM sleep slow-wave sleep sleep function
R_4_17 Verified Biology & Evolution

R_4_17 — Biogeography & the Wallace Line: Continental Drift, Island Life, and Distribution Puzzles

Biogeography — the study of the geographic distribution of organisms, both past and present — has been central to evolutionary biology since Alfred Russel Wallace (1823–1913) identified the sharp faunal boundary between

biogeography Wallace Line Alfred Russel Wallace island biogeography continental drift Wallacea
R_4_08 Verified Biology & Evolution

R_4_08 — Echolocation and the Evolution of Sensory Systems

The evolution of sensory systems represents some of the most striking convergent solutions to ecological challenges across the animal kingdom. Echolocation — the ability to emit sound pulses and interpret returning echoe

echolocation biosonar bat dolphin toothed whale convergent evolution
R_3_07 Verified Biology & Evolution

R_3_07 — Embryology and Morphogenesis: How Bodies Take Shape

Embryology — the study of how a single fertilized cell becomes a complex multicellular organism — is one of biology's most profound mysteries. From the discovery by Karl Ernst von Baer (1828) that embryos of different sp

embryology morphogenesis gastrulation body plan Hox genes morphogen gradient
R_3_17 Verified Biology & Evolution

R_3_17 — Neoteny & Heterochrony: Developmental Timing in Evolution

Heterochrony — evolutionary change in the timing or rate of developmental processes — is one of the most powerful mechanisms by which organisms evolve new morphologies without requiring entirely new genetic programs. The

neoteny heterochrony paedomorphosis peramorphosis Stephen Jay Gould developmental timing
R_3_12 Verified Biology & Evolution

R_3_12 — Evolution of Sex and Reproduction

Sex — the rearrangement of genetic material from two parents to produce genetically unique offspring — is one of the most fundamental yet puzzling features of life. Sexual reproduction involves enormous costs: the "twofo

evolution of sex sexual reproduction asexual reproduction meiosis recombination Red Queen hypothesis
R_3_05 Verified Biology & Evolution

R_3_05 — Coevolution — Arms Races, Mutualisms, and Red Queens

Coevolution — reciprocal evolutionary change between interacting species — is one of the most powerful engines of biological diversity. Leigh Van Valen's Red Queen hypothesis (1973) captured its essence: species must con

coevolution Red Queen hypothesis Van Valen arms race mutualism plant-pollinator
R_3_11 Verified Biology & Evolution

R_3_11 — Microevolution and Rapid Adaptation

Microevolution — changes in allele frequencies within populations over generations — is the fundamental engine of biological adaptation. Once assumed to operate too slowly to observe directly, research over the past 50 y

microevolution rapid adaptation contemporary evolution natural selection genetic drift gene flow
R_3_14 Verified Biology & Evolution

R_3_14 — Evolution of Aging and Senescence

Aging — the progressive decline in physiological function and increase in mortality rate with time — is one of evolution's deepest puzzles: why would natural selection, which optimizes fitness, permit organisms to deteri

aging senescence evolution mutation accumulation antagonistic pleiotropy disposable soma
R_3_19 Verified Biology & Evolution

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

chemotaxis bacteria signal transduction two-component system chemoreceptor CheA
R_3_15 Verified Biology & Evolution

R_3_15 — Epigenetics and Lamarckian Inheritance: Transgenerational Mechanisms Beyond DNA Sequence

Epigenetics — the study of heritable changes in gene expression that occur without alteration to the underlying DNA sequence — has fundamentally reshaped modern biology since the term was coined by Conrad Hal Waddington

epigenetics DNA methylation histone modification transgenerational inheritance Lamarckian inheritance epigenome
R_5_09 Verified Biology & Evolution

R_5_09 — Color in Nature: Structural Color, Pigmentation, and Signaling

Color in nature serves functions spanning camouflage, warning, mate attraction, thermoregulation, and protection from UV radiation — produced through two fundamentally different mechanisms: pigmentary color (selective ab

structural color pigment melanin carotenoid iridescence thin-film interference
R_5_20 Verified Biology & Evolution

R_5_20 — Mass Extinction Recovery: Post-Crisis Adaptive Radiation

Life on Earth has survived at least five major mass extinctions — the "Big Five" — each eliminating 75–96% of species. Yet each catastrophe was followed by a remarkable recovery phase in which surviving lineages radiated

mass extinction recovery adaptive radiation end-permian end-cretaceous K-Pg
R_5_13 Verified Biology & Evolution

R_5_13 — Biological Invasions: Introduced Species and Ecosystem Disruption

Biological invasions — the introduction and spread of species beyond their native range, typically aided by human activity — represent one of the top five drivers of global biodiversity loss, alongside habitat destructio

invasive species biological invasion introduced species exotic species ecological disruption biodiversity loss
R_5_15 Verified Biology & Evolution

R_5_15 — Rewilding: Ecological Restoration Through Trophic Cascades and Keystone Species Reintroduction

Rewilding is a conservation strategy that aims to restore self-sustaining ecosystems by reintroducing native keystone species — particularly large predators and megaherbivores — and reconnecting fragmented habitats throu

rewilding trophic cascade keystone species Pleistocene rewilding wolf reintroduction Yellowstone