RESEARCH BASE
Search 3,721 documents across 34 fields — every claim tier-rated by evidence
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.
497 results for "induced pluripotent stem cell" — page 17 of 25
R_2_14 — Recent Human Evolution: Lactase Persistence, Altitude Adaptation, and Malaria Resistance
Human evolution did not stop with the emergence of Homo sapiens ~300,000 years ago — natural selection has continued to shape human biology in response to agriculture, diet, disease, climate, and altitude, producing some
R_2_09 — Self-Domestication Hypothesis — Did Humans Tame Themselves?
The human self-domestication hypothesis proposes that Homo sapiens underwent a domestication process analogous to that of dogs, livestock, and Belyaev's experimentally domesticated foxes — but without an external domesti
R_1_10 — RNA World Hypothesis: The Origin of Life and Self-Replicating RNA
The RNA World hypothesis proposes that early life was based on RNA molecules that served as both genetic material and catalysts — before the emergence of DNA and proteins. This idea, named by Walter Gilbert in 1986, rest
R_1_01 — Abiogenesis & Origin of Life Theories
Abiogenesis — the emergence of life from non-living chemistry — remains one of the deepest unsolved problems in science. The oldest confirmed microfossils date to ~3.5 billion years ago (Pilbara, Western Australia), with
R_1_14 — Biofilms: Microbial Communities, Quorum Sensing, and Cooperation
Biofilms are structured communities of microorganisms — bacteria, archaea, fungi, and algae — attached to surfaces and embedded in a self-produced matrix of extracellular polymeric substances (EPS): polysaccharides, prot
R_1_09 — The Great Oxidation Event: Oxygen, Cyanobacteria, and Earth's Atmospheric Transformation
The Great Oxidation Event (GOE), occurring approximately 2.4–2.1 billion years ago during the Paleoproterozoic, was the most dramatic chemical transformation in Earth's history — atmospheric oxygen rose from trace levels
S_4_01 — Existential Risk Taxonomy
Existential risk (x-risk) refers to any event that could permanently curtail humanity's long-term potential — including extinction, civilizational collapse without recovery, or irreversible loss of value (e.g., permanent
S_1_12 — Digital Twins and Simulation Technology
A digital twin is a virtual replica of a physical system — a machine, building, city, human organ, or environmental process — continuously updated with real-time data from sensors on the physical counterpart, enabling mo
S_1_15 — Edge Computing: Distributed Intelligence and Fog Networks
Edge computing — processing data near the source of generation (at the "edge" of the network) rather than transmitting everything to centralized cloud data centers — addresses three fundamental limitations of cloud-centr
S_1_10 — Internet of Things and Ubiquitous Computing
The Internet of Things (IoT) refers to the network of physical objects — devices, vehicles, appliances, industrial equipment, wearables, environmental sensors — embedded with electronics, software, and connectivity that
S_5_07 — Future of Education Technology
Education technology (EdTech) applies digital tools to learning and instruction. MOOCs (Massive Open Online Courses): launched with high ambitions — Coursera (Stanford, 2012), edX (MIT/Harvard, 2012), Udacity (Stanford,
S_5_02 — Surveillance Technology — Panopticism, Mass Surveillance, and the Architecture of Control
Surveillance technology has evolved from Bentham's architectural Panopticon concept (1787) through the analog era of telephone wiretapping and photographic surveillance to the digital panopticon of the 21st century — whe
S_5_16 — Vertical Farming: Controlled Environment Agriculture and Urban Food Systems
Vertical farming — the practice of growing crops in vertically stacked layers within controlled indoor environments, using artificial lighting, hydroponic or aeroponic nutrient delivery, and precisely managed climate par
S_2_17 — Tissue Engineering: Scaffolds, Bioreactors, and Organ Fabrication
Tissue engineering — the fabrication of biological substitutes to restore, maintain, or improve tissue function — was formally defined by Robert Langer (MIT) and Joseph Vacanti (Harvard/Boston Children's Hospital) in the
S_2_11 — Bioinformatics: Computational Genomics and Drug Discovery
Bioinformatics — the application of computational methods to biological data — has become indispensable to modern biology and medicine, driven by the exponential growth of genomic, transcriptomic, proteomic, and metabolo
S_2_04 — Synthetic Biology — Engineering Life from First Principles
Synthetic biology represents the convergence of molecular biology, engineering, and computer science — applying rational design principles to living systems. The field was catalyzed by two landmark achievements: the cons
S_2_10 — Gene Drives: Ecosystem Engineering and Extinction Technology
Gene drives are genetic engineering systems that bias inheritance in sexually reproducing organisms, causing a modified gene to spread through a wild population at rates far exceeding normal Mendelian inheritance (which
S_2_13 — Xenotransplantation: Cross-Species Organs and Bioengineered Tissues
Xenotransplantation — the transplantation of organs, tissues, or cells from one species to another — is being pursued as a solution to the critical global organ shortage. In the US alone, over 100,000 people await organ
S_2_01 — CRISPR and Human Genetic Engineering
CRISPR-Cas9 is the most transformative biotechnology discovery of the 21st century — a molecular tool that allows precise editing of DNA in any organism, including humans. Discovered in bacteria's immune system against v
S_2_16 — Microfluidics: Lab-on-a-Chip and Droplet Engineering
Microfluidics — the precise manipulation of fluids at the microliter-to-picoliter scale in channels typically 10–500 μm wide — enables miniaturized, high-throughput biological and chemical analysis. George Whitesides (Ha
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