![]() This course will prepare students to develop mathematical models for biological systems and for biomedical engineering systems, devices, components, and processes and to use models for data reduction and for system performance analysis, prediction and optimization. Prerequisites: 42-101 and ( 03-121 or 03-151)Ĥ2-300 Junior BME Research Project Fall and SpringĤ2-302 Biomedical Engineering Systems Modeling and Analysis Fall and Spring: 9 units Priority for enrollment will be given to students who have declared the Additional Major in Biomedical Engineering. Pre-med students should register for 03-206. ![]() The course includes weekly lectures to complement the experimental component. Several cross-cutting modules are included as well. The experimental modules reinforce concepts from 42-101 Introduction to Biomedical Engineering and expose students to four areas of biomedical engineering: biomedical signal and image processing, biomaterials, biomechanics, and cellular and molecular biotechnology. This laboratory course is designed to provide students with the ability to make measurements on and interpret data from living systems. Prerequisites: 03-121 or 03-151 42-203 Biomedical Engineering Laboratory Fall and Spring: 9 units Prerequisite or co-requisite: 03-121 Modern Biology, or permission of instructor. Basic physical laws and principles will be explored as they relate to physiologic function. Due to the close interrelationship between structure and function in biological systems, each functional topic will be introduced through a brief exploration of anatomical structure. Modules on molecular physiology tissue engineering and physiological modeling are also included. ![]() Particular emphasis is given to the musculoskeletal, cardiovascular, respiratory, digestive, excretory, and endocrine systems. This course is an introduction to human physiology and includes units on all major organ systems. Prerequisite or co-requisite: 42-101 Introduction to Biomedical EngineeringĤ2-202 Physiology Fall and Spring: 9 units Outside speakers and case studies will describe real world problems and professional issues in biotechnology and bioengineering, and progress toward their solution. It provides an overview of professional topics including bioethics, regulatory issues, communication skills, teamwork, and other contemporary issues. This course exposes students to many of the issues that biomedical engineers face. One (but not more than one) semester of research, if registered for at least 9 units, may be counted as a restricted elective course toward the BME additional major.Ĥ2-201 Professional Issues in Biomedical Engineering Fall and Spring: 3 units Units may vary from 9 to 12 according to the expected time commitment, with one unit corresponding to 1 hour of research per week. A final written report of the results is required. The agreement should be summarized in a two-page project description with sign-off by the research advisor and a copy submitted for review and filing with the BME Department. The nature of the project, the number of units, and the criteria for grading are to be determined between the student and the research advisor. Arrangements may also be made via the Associate Head of BME for off-campus projects provided that a regular or adjunct BME faculty member agrees to serve as a co-advisor. ![]() ![]() Research projects for sophomores under the direction of a regular or adjunct BME faculty member. The course will focus on four areas: biotechnology, biomechanics, biomaterials and tissue engineering and biosignal and image processing and will introduce the basic life sciences and engineering concepts associated with these topics.Ĥ2-200 Sophomore BME Research Project Fall and Spring Examples will be used to illustrate how basic concepts and tools of science and engineering can be brought to bear in understanding, mimicking and utilizing biological processes. This course will provide exposure to basic biology and engineering problems associated with living systems and health care delivery. 42-101 Introduction to Biomedical Engineering Fall and Spring: 12 units ![]()
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