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1 - 10 of 19 results for: MI ; Currently searching offered courses. You can also include unoffered courses

MI 27SC: Viruses in the News

Viruses are unique biological entities that resemble both living and inanimate objects. Despite their simple structure they include some of the most devastating and ubiquitous causes of human disease. The compelling nature of this topic is illustrated by the recent Ebola epidemic, which emerged coincident with the last time this class was offered. From smallpox to measles to HIV to the common cold, viruses have literally changed the course of human history and impacted evolution. They have also been important experimental tools for probing the molecular nature of key biological processes, and they have been utilized in many key discoveries and Nobel Prize-winning research programs. In books, movies, newspapers, and electronic feeds, viruses continue to make the news on a daily basis. Using contemporary media, content experts, model building, interactive sessions, and field trips, we will explore the essential nature of viruses, what makes them unique, how they are classified, how they cause disease, key molecular processes, breakthroughs in prevention and treatment, current efforts in trying to eradicate viruses, and cultural iconography pertaining to viruses. In short, this seminar is intended to go viral. Sophomore College course, applications required, due at noon on April 5, 2016. Apply at http://soco.stanford.edu .
Terms: Sum | Units: 2

MI 70Q: Photographing Nature

Utilizes the idiom of photography to learn about nature, enhance observation, and explore scientific concepts. Builds upon the pioneering photographic work of Eadweard J. Muybridge on human and animal locomotion. A secondary goal is to learn the grammar, syntax, composition, and style of nature photography to enhance the use of this medium as a form of scientific communication and also to explore the themes of change across time and space. Scientific themes to be explored include: taxonomy, habitat preservation, climate change; species diversity; survival and reproductive strategies; ecological niches and coevolution, carrying capacity and sustainability, population densities, predation, and predator-prey relationships, open-space management, the physics of photography. Extensive use of field trips and class critque.
Terms: Spr | Units: 3
Instructors: Siegel, R. (PI)

MI 104: Innate Immunology (IMMUNOL 204, MI 204)

Innate immune mechanisms as the only defenses used by the majority of multicellular organisms. Topics include Toll signaling, NK cells, complement, antimicrobial peptides, phagocytes, neuroimmunity, community responses to infection, and the role of native flora in immunity. How microbes induce and defeat innate immune reactions, including examples from vertebrates, invertebrates, and plants.
Terms: Spr | Units: 3

MI 115B: The Vaccine Revolution (HUMBIO 155B)

Advanced seminar. Human aspects of viral disease, focusing on recent discoveries in vaccine development and emerging infections. Journal club format: students choose articles from primary scientific literature, write formal summaries, and synthesize them into a literature review. Emphasis is on analysis, experimental design, and interpretation of data. Oral presentations. Enrollment limited to 8. Prerequisite: prior enrollment in HumBio 155H Humans and Viruses or MI 116, The Human Virosphere
Terms: Spr | Units: 6
Instructors: Siegel, R. (PI)

MI 198: Directed Reading in Microbiology and Immunology

Fields of study are decided in consultation with sponsoring professor. Prerequisite: consent of instructor.
Terms: Aut, Win, Spr, Sum | Units: 1-15 | Repeatable for credit

MI 199: Undergraduate Research

Investigations sponsored by individual faculty members. Possible fields: microbial molecular biology and physiology, microbial pathogenicity, immunology, virology, and molecular parasitology. Prerequisite: consent of instructor.
Terms: Aut, Win, Spr, Sum | Units: 1-18 | Repeatable for credit

MI 204: Innate Immunology (IMMUNOL 204, MI 104)

Innate immune mechanisms as the only defenses used by the majority of multicellular organisms. Topics include Toll signaling, NK cells, complement, antimicrobial peptides, phagocytes, neuroimmunity, community responses to infection, and the role of native flora in immunity. How microbes induce and defeat innate immune reactions, including examples from vertebrates, invertebrates, and plants.
Terms: Spr | Units: 3

MI 210: Advanced Pathogenesis of Bacteria, Viruses, and Eukaryotic Parasites

For graduate and medical students, and advanced undergraduates; required of first-year graduate students in Microbiology and Immunology. The molecular mechanisms by which microorganisms invade animal and human hosts, express their genomes, interact with macromolecular pathways in the infected host, and induce disease. Current literature. Undergraduate students interested in taking this class must meet with the instructor to obtain approval before enrolling.
Terms: Win | Units: 4

MI 211: Advanced Immunology I (IMMUNOL 201)

For graduate students, medical students and advanced undergraduates. Topics include the innate and adaptive immune systems; genetics, structure, and function of immune molecules; lymphocyte activation and regulation of immune responses. Prerequisites: undergraduate course in Immunology and familiarity with experimental approaches in biochemistry, molecular biology, and cell biology.
Terms: Win | Units: 3
Instructors: Chien, Y. (PI)

MI 215: Principles of Biological Technologies (IMMUNOL 215)

The principles underlying novel as well as commonly utilized techniques to answer biological questions. Lectures and primary literature critiques on topics such as fluorescence microscopy, including applications such as FRET and single-cell analysis; human and murine genetic analysis; FACS; proteomics and analysis of noncoding RNAs. Class participation is emphasized. Prerequisite: biochemistry. Required of first-year graduate students in Microbiology and Immunology and the Immunology program.
Terms: Spr | Units: 3
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