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Physiology and Biophysics 205: Electronics for Biologists W
4.00 Credits
University of California-Irvine
Lecture, three hours; laboratory four hours. Basic principles of electricity; properties and use of discrete components and integrated circuits; circuit analysis and design. Intended for advanced students in the life sciences. Same as Neurobiology and Behavior 249.
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Physiology and Biophysics 205 - Electronics for Biologists W
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Physiology and Biophysics 206A: B Introduction to Medical Physiology W
5.00 - 6.00 Credits
University of California-Irvine
Lecture, six hours; discussion, two hours; other, two hours. Vertebrate physiology with emphasis on humans and on the relationship between the function of normal tissues and the processes of disease. Fundamental principles of physiology and the interrelationships which control organ function. Prerequisites: Physiology 202 and consent of Department.
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Physiology and Biophysics 206A - B Introduction to Medical Physiology W
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Physiology and Biophysics 209: Literature in Protein Engineering
1.00 Credits
University of California-Irvine
Seminar, one hour, discussion, half-hour. Students review current papers in the field of protein engineering and present the ideas contained therein to other students and faculty. May be repeated for credit. Same as Molecular Biology 209.
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Physiology and Biophysics 209 - Literature in Protein Engineering
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Physiology and Biophysics 210: Molecular Pathophysiology
3.00 Credits
University of California-Irvine
Guided seminar format. Topics selected illustrate investigations into range of disease phenotypes from the organ, cell, and molecular level. Students present and guide discussion based upon assigned papers, additional research, and faculty discussions. Goal is to formulate plan of investigation. Prerequisite: consent of instructor.
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Physiology and Biophysics 210 - Molecular Pathophysiology
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Physiology and Biophysics 211: Protein Crystallography
3.00 Credits
University of California-Irvine
Lecture, three hours. Introduces students to the theory and practice of macromolecular crystallography. Covers all aspects, including protein crystallization, space groups, phasing methods, electron density map interpretation, refinement and preparation of results for publication. Corequisite: calculus. Prerequisite: consent of instructor. Same as Molecular Biology and Biochemistry 254.
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Physiology and Biophysics 211 - Protein Crystallography
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Physiology and Biophysics 232: Physiology of Ion Channels
4.00 Credits
University of California-Irvine
Lecture, one and half hours; discussion, three hours. Discusses how ion channels work (molecular/structural biophysics level) and what ion channels do in diverse cell types (cell physiology level). From generating electrical signals in the nervous system to regulating immune system function, channels are everywhere in the body doing important work. Prerequisite: consent of instructor. Offered only if sufficient demand exists.
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Physiology and Biophysics 232 - Physiology of Ion Channels
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Physiology and Biophysics 242: Protein Engineering W of even years
3.00 Credits
University of California-Irvine
The design of novel proteins and their production by genetic manipulation. Principles of protein structure and function and techniques of molecular biology relevant to protein engineering. Applications of protein technology. Prerequisites: Molecular Biology and Biochemistry 203 and 204, Engineering CBEMS112; or consent of instructor. Same as Engineering CBEMS242.
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Physiology and Biophysics 242 - Protein Engineering W of even years
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Physiology and Biophysics 252: Introduction to Proteomics W
3.00 Credits
University of California-Irvine
Introduces students to concepts and methods of proteomics including protein identification, expression proteomics, and protein-protein interactions.
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Physiology and Biophysics 252 - Introduction to Proteomics W
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Physiology and Biophysics 261: Protein Stability and Structure
3.00 Credits
University of California-Irvine
Lecture, discussions, demonstrations; three hours. Fundamental biophysical principles of the folding and structure of proteins in aqueous and membrane environments. Analysis of key papers concerned with general structural features of proteins, protein folding, and protein structure prediction. Prerequisites: physical chemistry, graduate course in biochemistry; consent of instructor.
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Physiology and Biophysics 261 - Protein Stability and Structure
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Physiology and Biophysics 271A: B Molecular Physiology and Disease
4.00 Credits
University of California-Irvine
Introduces students to concepts of molecular physiology and pharmacology related directly to human diseases. Prerequisite: consent of instructor. Same as Pharmacology 271A, B and Pathology 271A, B.
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Physiology and Biophysics 271A - B Molecular Physiology and Disease
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