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.

308 results for "Sen" — page 6 of 16

Z_2_10 Verified Molecular Biology

Z_2_10 — Genetics of Aging and Progeria

Aging — the progressive decline in physiological function leading to increased vulnerability to disease and death — has a substantial genetic component: twin studies estimate heritability of human lifespan at ~25–30% (He

aging genetics progeria Hutchinson-Gilford progeria HGPS LMNA lamin A
Z_2_12 Verified Molecular Biology

Z_2_12 — Genetics of Pain Perception

Pain perception — the subjective experience triggered by actual or potential tissue damage — varies enormously across individuals, with genetic factors accounting for 25–50% of the variance in pain sensitivity (twin stud

pain genetics nociception SCN9A Nav1.7 congenital insensitivity to pain TRPV1
Z_2_21 Verified Molecular Biology

Z_2_21 — Epigenetic Aging Clocks

Epigenetic aging clocks are mathematical models that use patterns of DNA methylation at specific CpG dinucleotides across the genome to estimate an individual's biological age with remarkable accuracy — typically within

epigenetic clock DNA methylation biological age Horvath clock GrimAge aging
Z_2_14 Verified Molecular Biology

Z_2_14 — Genetics of Longevity and Blue Zones

The genetics of human longevity — why some individuals live past 100 while most do not — is a field where heritability is modest, effect sizes are small, and environmental factors dominate, yet several genetic pathways h

longevity genetics aging centenarians Blue Zones telomeres telomerase
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_22 Verified Molecular Biology

Z_2_22 — Telomere Molecular Biology

Telomeres are the protective nucleoprotein structures capping the ends of linear eukaryotic chromosomes, consisting of tandem repetitive DNA sequences (5'-TTAGGG-3' in vertebrates, repeating ~1,000–2,000 times for a tota

telomere telomerase chromosome end TTAGGG Hayflick limit replicative senescence
Z_2_02 Verified Molecular Biology

Z_2_02 — Telomere Biology & Genetics of Aging

Telomeres — repetitive DNA sequences (TTAGGG)ₙ capping the ends of linear chromosomes — serve as protective buffers against chromosome degradation, end-to-end fusion, and the progressive DNA loss inherent in the end-repl

telomere telomerase aging senescence Hayflick limit Elizabeth Blackburn
Z_2_16 Verified Molecular Biology

Z_2_16 — Cancer Genomics & Precision Oncology

Cancer genomics — the comprehensive analysis of the genetic alterations that drive cancer initiation, progression, and resistance to therapy — has transformed oncology from a tissue-of-origin classification system into a

cancer genomics precision oncology tumor sequencing oncogene tumor suppressor somatic mutation
Z_1_21 Verified Molecular Biology

Z_1_21 — Riboswitches and RNA Thermometers

Riboswitches are structured RNA elements typically found in the 5' untranslated regions (5' UTRs) of bacterial messenger RNAs that directly sense and bind specific small-molecule metabolites — changing their three-dimens

riboswitch RNA thermometer aptamer gene regulation metabolite sensing mRNA structure
Z_4_02 Verified Molecular Biology

Z_4_02 — Stem Cells and Pluripotency

Stem cells — defined by the dual capacity for self-renewal (division producing at least one daughter cell retaining stemness) and differentiation (specialization into distinct cell types) — are the foundational building

stem cell pluripotency embryonic stem cell induced pluripotent stem cell iPSC Yamanaka factors
Z_4_10 Verified Molecular Biology

Z_4_10 — Signal Transduction: How Cells Communicate

Signal transduction — the molecular mechanisms by which cells detect, interpret, and respond to external signals (hormones, growth factors, neurotransmitters, cytokines, environmental cues) — is one of the central organi

signal transduction cell signaling receptor kinase second messenger G protein
Z_4_04 Verified Molecular Biology

Z_4_04 — RNA Biology: Types and Functions

RNA (ribonucleic acid) — once considered merely a passive intermediary between DNA and protein — is now recognized as the most functionally diverse class of biological macromolecules, performing roles in catalysis, gene

RNA biology RNA types messenger RNA mRNA transfer RNA tRNA
Z_4_22 Verified Molecular Biology

Z_4_22 — Protein Chaperone Systems

Molecular chaperones are a diverse group of proteins that assist other proteins in achieving and maintaining their correct three-dimensional structures — preventing misfolding, aggregation, and toxic accumulation of non-

chaperone heat shock protein Hsp70 Hsp90 GroEL GroES
K_3_02 Credible Consciousness

K_3_02 — Embodied Cognition

Embodied cognition is a broad research program challenging the classical cognitive science view that the mind is essentially a computer processing abstract symbols in the brain. Instead, embodied cognition holds that thi

embodied cognition 4E cognition embedded enacted extended embodied
K_3_10 Credible Consciousness

K_3_10 — Fetal and Infant Consciousness

The question of when consciousness emerges during human development — whether prenatally, at birth, or gradually through infancy — is one of the most consequential in consciousness studies, with direct implications for f

fetal consciousness infant consciousness neonatal consciousness prenatal awareness fetal pain cortical development
K_3_01 Verified Consciousness

K_3_01 — Machine Consciousness — Can AI Be Aware?

The question of machine consciousness — whether artificial systems can be genuinely aware rather than merely simulating awareness — stands at the intersection of philosophy of mind, neuroscience, and computer science. Jo

machine consciousness Chinese Room Turing Test Integrated Information Theory IIT Phi
K_3_14 Credible Consciousness

K_3_14 — Consciousness in Octopuses and Distributed Nervous Systems

Octopuses (Octopus vulgaris, O. bimaculoides, Abdopus aculeatus, and ~300 other species in order Octopoda) represent perhaps the most profound natural experiment in the evolution of consciousness: they are the most cogni

octopus cephalopod consciousness distributed nervous system invertebrate cognition mollusc
K_3_08 Credible Consciousness

K_3_08 — Intention, Volition, and Motor Consciousness

The neural basis of voluntary action and the timing of conscious intention relative to brain activity has become one of the most productive — and philosophically consequential — research programs in consciousness studies

free will neuroscience volition Bereitschaftspotential readiness potential Libet experiment Benjamin Libet
K_3_07 Credible Consciousness

K_3_07 — Evolution of Consciousness

The question of when, how, and why consciousness evolved is one of the deepest unsolved problems at the intersection of biology, neuroscience, and philosophy. Two major recent proposals have attempted to identify the evo

evolution of consciousness consciousness origins sentience evolution Cambrian consciousness nervous system evolution neural correlates evolution
K_1_13 Credible Consciousness

K_1_13 — Enactivism: Consciousness Through Action and Interaction

Enactivism is a radical approach to cognition and consciousness that rejects the traditional computational model of the mind (the brain as information-processing computer operating on internal representations of the exte

enactivism embodied cognition autopoiesis sense-making Varela Thompson