Bioengineering
Catalog pages 118-121
Subject abbreviation: BIEN The Marlan and Rosemary Bourns College of Engineering
Victor G. J. Rodgers, D.Sc., Chair Department Office, 217 MSE
- (951) 827-4303; www.bioeng.ucr.edu
Professors Bahman Anvari, Ph.D. Dimitrios Morikis, Ph.D. Victor G. J. Rodgers, D.Sc. Jerome S. Schultz, Ph.D., Distinguished Professor Associate Professors Jiayu Liao, Ph.D. Valentine Vullev, Ph.D. Assistant Professors Kaustabh Ghosh, Ph.D. William H. Grover, Ph.D. Huinan Liu, Ph.D. Julia Lyubovitsky, Ph.D. Jin Nam, Ph.D. Boris Hyle Park, Ph.D. ** Adjunct Professor Shu-Wei Sun, Ph.D.
Major
The major in Bioengineering allows students to complete a B.S. degree that provides a basic education to enter the fields of bioengineering and biotechnology.
Bioengineering is rooted in physics, mathematics, chemistry, biology, and the life sciences. It is the application of a systematic, quantitative, and integrative way of thinking about and approaching the solutions of problems important to biology, health, and clinical practice.
Bioengineers develop processes and products that are important for health and treatment of diseases, new materials, protecting environments, and food production. They are employed by the pharmaceutical, biotechnology, medical device, and environmental and food industries. For students interested in medicine, the bioengineering program provides the basic courses to prepare for application to medical schools.
The objective of the bioengineering program is to produce graduates who:
- • have a strong foundation to apply science,
engineering, and biological principles to meet the challenges at the interface of engineering, life sciences, and medicine
- • have the capability to pursue graduate
studies, careers in the medical device or biotechnology industries, or entry into medical or other health related professional schools
- • are effective as professionals working
individually and in teams and can communicate effectively to integrate contributions from multiple disciplines to address biological and medical problems.
- • have an appreciation of and sensitivity to a
broad range of ethical and social concerns related to bioengineering
The Bioengineering B.S. degree program at UCR is accredited by the Engineering Accreditation Comission of ABET, www.abet. org.
All undergraduates in the College of Engineering must see an advisor at least annually. Visit student.engr.ucr.edu for details.
University Requirements
See Undergraduate Studies section.
College Requirements
See The Marlan and Rosemary Bourns College of Engineering, Colleges and Programs section.
The Bioengineering major uses the following major requirements to satisfy the college’s Natural Sciences and Mathematics breadth requirement.
Major Requirements
- 1. Lower-division requirements (73 units)
- a) BIEN 010
CHEM 01LA, CHEM 01LB, CHEM 01LC
- d) CS 010
MATH 010A, MATH 010B, MATH 046
- 2. Upper-division requirements (84 units)
- a) BCH 100
BIEN 140A/CEE 140A, BIEN 155, BIEN 159/CEE 159, BIEN 175A, BIEN 175B
- c) BIEN 115
- e) STAT 155
(4 units maximum), CEE 135, CHE 105*, CHE 122, CHE 161*, EE 100A, EE 100B, EE 105, EE 110A, EE 110B, EE 138, EE 139, EE 143, EE 144, EE 146*, EE 152*, ENVE 133, ENVE 142, ENVE 171, ME 114, ME 138, ME 153, ME 180 (*require consent of instructor prior to enrollment.)
Visit the Student Affairs Office in the College of Engineering or student.engr.ucr.edu for a sample program.
Courses
- BIEN 010: Overview of Bioengineering (2 units)
- BIEN 105: Circulation Physiology (4 units)
- BIEN 110: Biomechanics of the Human Body (4 units)
- BIEN 115: Quantitative Physiology (4 units)
- BIEN 120: Biosystems and Signal Analysis (4 units)
- BIEN 125: Biotechnology and Molecular Bioengineering (4 units)
- BIEN 130: Bioinstrumentation (4 units)
- BIEN 130L: Bioinstrumentation Laboratory (2 units)
- BIEN 135: Biophysics and Biothermodynamics (4 units)
- BIEN 136: Tissue Engineering (3 units)
- BIEN 137: Advanced Biomechanics (4 units)
- BIEN 138: Fundamental Principles of Wound Repair (4 units)
- BIEN 140A: Biomaterials (4 units)
- BIEN 140B: Biomaterials (4 units)
- BIEN 155: Biotechnology Laboratory (2 units)
- BIEN 159: Dynamics of Biological Systems (4 units)
- BIEN 165: Biomolecular Engineering (4 units)
- BIEN 166: Bioinspired Engineering for Sustainable Energy (4 units)
- BIEN 175A: Senior Design (4 units)
- BIEN 175B: Senior Design (4 units)
- BIEN 201: Mathematical Methods for Bioengineering (4 units)
- BIEN 220: Chemical Genomics Design Studio (2 units)
- BIEN 223: Engineering Analysis of Physiological Systems (4 units)
- BIEN 224: Cellular and Molecular Engineering (4 units)
- BIEN 227: Biophotonics: Laser-Tissue Interactions and Therapeutic Applications (3 units)
- BIEN 228: Biophotonics: Optical Diagnosis and Measurements (3 units)
- BIEN 233: Computational Modeling of Biomolecules (4 units)
- BIEN 234: Orthopaedic Regenerative Engineering and Mechanobiology (4 units)
- BIEN 235: Vascular Biomechanics and Engineering (4 units)
- BIEN 236: Nanomaterials for Regenerative Medicine (4 units)
- BIEN 245: Optical Methods in Biology, Chemistry, and Engineering (4 units)
- BIEN 249: Integration of Computational and Experimental Biology (4 units)
- BIEN 264: Biotransport Phenomena (4 units)
- BIEN 268: Bioengineering Experimentation and Analysis (2 units)
- BIEN 269: Special Topics in Optical Measurements and Photomedicine (2 units)
- BIEN 270: Transport with Reactions in Biological Systems (4 units)
- BIEN 271: Video Bioinformatics: Multi-scale Analysis of Biological Systems (2 units)
- BIEN 273: Special Topics in Regenerative Engineering and Biomechanics (2 units)
- BIEN 286: Colloquium in Bioengineering (1 units)
- BIEN 401: Fundamentals of Proposal Preparation and Ethical Standards in Bioengineering (4 units)
- BIEN 402: Effective Writing for Bioengineering Research Publications (4 units)