john-okeefe
25ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A profile of John O’Keefe’s discovery of place cells, neurons in the hippocampus that become active when an animal is in a particular location.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A profile of John O’Keefe’s discovery of place cells, neurons in the hippocampus that become active when an animal is in a particular location.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A profile of Jules A. Hoffmann’s discovery that the Toll gene helps fruit flies detect and fight fungal infections.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A thinking framework based on Nobel Prize winner Katalin Karikó’s scientific career and persistence against prevailing opinions.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A distilled profile of Linda B. Buck’s scientific ideas, including the role of curiosity and deep, step-by-step investigation.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A completed distilled profile, with no subject or capabilities described in the available information.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A short reference to Mario R. Capecchi’s Nobel-recognised work on gene targeting, embryonic stem cells, and gene-knockout mice.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A profile of Mary E. Brunkow’s work linking the FOXP3 gene to IPEX, a human autoimmune disease in which the immune system attacks the body.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A profile of May-Britt Moser’s discovery of grid cells, neurons that help create a coordinate system for navigating space.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A profile of Michael Houghton, the virologist who helped discover hepatitis C, a virus that can damage the liver.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A profile of Michael Rosbash’s explanation of the biological clock as a self-regulating cycle involving the period gene and PER protein.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A reference skill about Michael W. Young, an American geneticist who studied the molecular mechanisms of circadian rhythms using fruit flies. Circadian rhythms are biological cycles that repeat roughly every 24 hours.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A biology-focused skill about Oliver Smithies, including his scientific approach to correcting genetic errors and solving problems through experimentation.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A problem-solving framework based on Ralph M. Steinman, the Nobel Prize-winning immunologist who discovered dendritic cells. It emphasizes using data to answer criticism and staying committed to a finding over the long term.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A biology-focused skill about Randy Schekman’s yeast genetics research on how cells move proteins in small membrane containers called vesicles.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A knowledge skill about Richard Axel, the Nobel Prize-winning neuroscientist, organised as a distilled profile with identity anchors and five mental models. The supplied description names two models: reducing explanations from molecules toward the mind, and using indirect paths.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A decision-making framework based on Robert G. Edwards, the Nobel Prize-winning scientist associated with the development of in-vitro fertilisation, or IVF.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A biographical knowledge skill about Japanese biochemist Satoshi Ōmura and his discoveries of compounds from microorganisms, including ivermectin's origins. Ivermectin is a medicine used against parasitic infections.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A knowledge skill about Shimon Sakaguchi's ideas, including a model for balancing the immune system and a method for judging explanations by how much they clarify. Sakaguchi is a Japanese immunologist.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A reasoning framework based on Shinya Yamanaka, the Nobel Prize-winning researcher who discovered induced pluripotent stem cells, or iPS cells. Its central idea is reducing a complex problem to the few factors that matter most.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A perspective based on Sir John Gurdon, who showed that a mature cell nucleus can be reset by an egg cell. It focuses on persistence through doubt and on the idea that a cell’s current state may not determine its final potential.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A distilled perspective based on Sir Martin J. Evans, with its sources listed as Nobel Prize materials, biomedical research databases, and journalism. The description gives no further account of the ideas or tasks it contains.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A scientific perspective on how animal cells sense oxygen. It explains the HIF-1α, prolyl hydroxylase, and VHL pathway, in which oxygen levels affect protein changes that control cell responses.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A perspective based on Stanley B. Prusiner’s discovery of prions, infectious agents made from misfolded proteins rather than genetic material. It centers on questioning the assumption that every infection must involve nucleic acids such as DNA or RNA.
ChrisLou-bioinfo/nobel-medicine-minds
Skill Claude CodeCodex
A set of thinking models based on Svante Pääbo, the scientist known for studying ancient human DNA. It covers breaking down seemingly impossible tasks and taking useful risks across different fields.