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2,494 results for "Process and Reality" — page 13 of 125

Z_3_09 Molecular Biology

Z_3_09 — Conservation Genetics and Endangered Species

Conservation genetics applies population genetics, genomics, and molecular biology to the preservation of biological diversity. At its core is the recognition that genetic diversity — the raw material for adaptation to c

conservation genetics endangered species genetic diversity inbreeding depression effective population size genetic drift
Z_2_15 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_1_07 Molecular Biology

Z_1_07 — Genetic Recombination and Crossing Over

Genetic recombination — the physical exchange of DNA segments between homologous chromosomes during meiosis — is a fundamental biological process that generates genetic diversity, ensures proper chromosome segregation, a

recombination crossing over meiosis chiasma homologous recombination linkage
Z_1_13 Verified Molecular Biology

Z_1_13 — DNA Repair Mechanisms and Genome Stability

Every human cell sustains an estimated 10,000–100,000 DNA lesions per day from endogenous sources alone — oxidative metabolism, spontaneous hydrolysis, replication errors, and reactive metabolites — while environmental m

DNA repair base excision repair nucleotide excision repair mismatch repair double-strand break homologous recombination
Z_1_12 Molecular Biology

Z_1_12 — Genome Architecture and 3D Organization

The human genome — approximately 6.4 billion base pairs of DNA — is packed into a nucleus only ~6 μm in diameter. If stretched end-to-end, the DNA of a single human cell would extend about 2 meters, yet it is packaged an

genome architecture 3D genome chromatin organization topologically associating domains TADs chromosome territories
Z_4_05 Verified Molecular Biology

Z_4_05 — Synthetic Biology and Minimal Genomes

Synthetic biology aims to design, construct, and engineer biological systems and organisms with novel functions not found in nature — or to redesign existing biological systems for useful purposes. The field's landmark a

synthetic biology minimal genome JCVI-syn3.0 Mycoplasma mycoides synthetic cell Venter
Z_4_23 Verified Molecular Biology

Z_4_23 — Memory as Physical and Molecular Phenomenon

What is a memory made of? The question has driven neuroscience from Santiago Ramón y Cajal's 1894 hypothesis that learning strengthens connections between neurons, through Donald Hebb's 1949 postulate that "neurons that

molecular memory memory engram synaptic plasticity long-term potentiation LTP Eric Kandel
Z_4_03 Molecular Biology

Z_4_03 — Forensic Genetics and DNA Identification

Forensic genetics uses DNA analysis to identify individuals, establish biological relationships, and solve criminal cases — a revolution that began when Sir Alec Jeffreys (1984, University of Leicester) discovered DNA fi

forensic genetics DNA fingerprinting STR profiling short tandem repeat CODIS combined DNA index system
Z_4_15 Verified Molecular Biology

Z_4_15 — Molecular Motors: Kinesin, Dynein, and Myosin

Molecular motors — protein machines that convert the chemical energy of ATP hydrolysis into directed mechanical work — are the engines of cellular life, responsible for transporting cargo within cells, driving cell divis

molecular motor kinesin dynein myosin ATP cytoskeleton
K_3_05 Consciousness

K_3_05 — Extended Mind and Cognitive Extension

The extended mind thesis (EMT), proposed by Andy Clark and David Chalmers in their landmark 1998 paper "The Extended Mind," argues that cognitive processes need not be confined within the skull — external objects, tools,

extended mind cognitive extension Clark and Chalmers parity principle Otto's notebook scaffolded cognition
K_3_08 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_4_13 Verified Consciousness

K_4_13 — Mirror Neurons and Social Cognition

Mirror neurons are a class of neurons, first discovered in the early 1990s in the premotor cortex (area F5) of macaque monkeys by Giacomo Rizzolatti, Vittorio Gallese, and colleagues at the University of Parma, that fire

mirror neuron social cognition empathy imitation action understanding premotor cortex
K_2_05 Consciousness

K_2_05 — Unconscious Processing

The cognitive unconscious — mental processes that influence behavior, emotion, and decision-making without reaching conscious awareness — is one of the most empirically robust phenomena in psychology and neuroscience. Fa

unconscious processing subliminal perception implicit memory priming blindsight automatic processing
K_2_02 Consciousness

K_2_02 — Phantom Limb, Body Schema, and Embodied Consciousness

Phantom limb phenomena — the vivid perception of a limb that has been amputated — provide a unique window into the neural construction of bodily self-awareness and the relationship between consciousness and embodiment. F

phantom limb body schema V.S. Ramachandran mirror box therapy rubber hand illusion proprioception
K_2_12 Verified Consciousness

K_2_12 — Neural Oscillations and Brainwave Consciousness

Neural oscillations — rhythmic fluctuations in the electrical activity of neuronal populations — are among the most prominent features of brain activity, measurable by electroencephalography (EEG) since Hans Berger's fir

neural oscillation brainwave gamma theta alpha beta
K_2_11 Verified Consciousness

K_2_11 — Default Mode Network: Brain at Rest and Self-Referential Consciousness

The Default Mode Network (DMN) is a large-scale brain network that is most active when a person is not focused on the external environment — during mind-wandering, daydreaming, self-referential thought, autobiographical

default mode network DMN resting state self-referential mind-wandering autobiographical memory
K_5_02 Consciousness

K_5_02 — Pain, Consciousness, and the Nature of Suffering

Pain is one of the most philosophically revealing phenomena in consciousness studies: it is simultaneously a sensory detection system, an emotional experience, a cognitive evaluation, and a social communication — and the

pain consciousness suffering neuroscience pain matrix neuromatrix theory Melzack gate control affective pain
K_5_14 Credible Consciousness

K_5_14 — Buddhist Abhidharma and the Analysis of Consciousness

The Abhidharma (Sanskrit: "higher teaching," Pali: Abhidhamma) represents Buddhism's systematic attempt to analyze consciousness into its fundamental components — one of the most detailed pre-modern phenomenological fram

abhidharma buddhist-consciousness vijñana citta cetasika yogacara
K_5_17 Verified Consciousness

K_5_17 — Neuroplasticity, Cortical Reorganization, and Brain Self-Repair

Neuroplasticity — the brain's ability to reorganize its structure, function, and connections in response to experience, injury, or environmental demand — has transformed neuroscience from a static model ("the adult brain

neuroplasticity cortical reorganization brain plasticity synaptic plasticity Hebbian learning critical period
K_5_15 Verified Consciousness

K_5_15 — Neural Fractals & the Edge of Chaos: Brain Criticality and Complexity

The brain is poised at a critical point between order and chaos — and its fractality is not an accident but a functional necessity. In 2003, John Beggs and Dietmar Plenz published one of neuroscience's landmark papers: t

neural fractals edge of chaos brain criticality neuronal avalanches Beggs and Plenz 1/f EEG noise