COM SCI M296A · CS M296AAdvanced Modeling Methodology for Dynamic Biomedical Systems
Computer Science · 4 units · Graduate courses (200-299)
(Same as Bioengineering M296A and Medicine M270C.) Development of dynamic systems modeling methodology for physiological, biomedical, pharmacological, chemical, and related systems. Control system, multicompartmental, noncompartmental, and input/output models, linear and nonlinear. Emphasis on model applications, limitations, and relevance in biomedical sciences and other limited data environments. Problem solving in PC laboratory.
Letter grading.
When it runs
Not on the schedule for any of Fall 2025 through Spring 2027. UCLA publishes only that window, so this does not mean the course is gone — check the official listing.
Requisites
Official UCLA wording
Requisite: Electrical Engineering 141 or 142 or Mathematics 115A or Mechanical and Aerospace Engineering 171A.
BruinTree reads · Prerequisite
confidence 1.00 · from textRequires
Everything that has to come before this course, not just the courses named in the requisite above.
COM SCI M296A
- EC ENGR 141Principles of Feedback Control
- EC ENGR 102Systems and Signals
- MATH 33BDifferential Equations
- MATH 115ALinear Algebra
- MATH 33ALinear Algebra and Applications
- MECH&AE 171AIntroduction to Feedback and Control Systems: Dynamic Systems Control I
- MECH&AE 107Introduction to Modeling and Analysis of Dynamic Systems
- COM SCI 31Introduction to Computer Science I
- MECH&AE M20Introduction to Computer Programming with MATLAB
- EC ENGR 142Linear Systems: State-Space Approach
4 direct requisites. Showing 16 courses over 3 levels; the branches marked with a count carry on past it. Every course here opens its own tree.
Unlocks
What this course is a requisite for, and what those courses lead to in turn.
COM SCI M296A
- COM SCI M296BOptimal Parameter Estimation and Experiment Design for Biomedical Systems
- COM SCI M296CAdvanced Topics and Research in Biomedical Systems Modeling and Computing
1 course lists this as a requisite. The whole downstream is here — 2 courses over 2 levels. Every course here opens its own tree.