BME 3110

BME 3110

Course information provided by the 2025-2026 Catalog.

The behaviors of cells are increasing appreciated to be governed by a system of regulatory pathways, which processes information often in a multivariate, dynamic and non-linear fashion. The ability to reduce this complexity to predictable models is useful for designing new cancer therapies and genetically engineering cellular machines. The course will cover: (1) analysis of dynamic control processes in cell biology, from intracellular pathways to networks to multicellular systems; (2) principles of computational systems biology, including genomic, proteomic, and transcriptomic algorithms; and (3) principles of synthetic biology, including gene circuit design and modeling. Students will learn to solve problems using computationally implemented algorithms and models, involving statistical methods, differential equation systems, multivariate regression, and logic-based approaches. This course is designed for upper-level undergraduate and Master's students in the biomedical, biological and/or engineering sciences.


Prerequisites BME 3010, MATH 2930, MATH 2940, CS 1112 or equivalents or permission of instructor. Corequisite: BME 3020 or equivalent.

Last 4 Terms Offered 2025SP, 2024SP, 2023SP, 2022SP

View Enrollment Information

Syllabi: none
  •   Regular Academic Session.  Choose one lecture and one discussion. Combined with: BME 5610

  • 3 Credits Graded

  •  5082 BME 3110   LEC 001

    • MWF
    • Jan 20 - May 5, 2026
    • Cosgrove, B

  • Instruction Mode: In Person

    Enrollment limited to: juniors and seniors; sophomores by permission of department.

  •  5218 BME 3110   DIS 201

    • R
    • Jan 20 - May 5, 2026
    • Cosgrove, B

  • Instruction Mode: In Person

  •  5219 BME 3110   DIS 202

    • R
    • Jan 20 - May 5, 2026
    • Cosgrove, B

  • Instruction Mode: In Person