Stanford Root

Schedule

Stanford Root

Schedule

BIOE 217

Translational Bioinformatics (BMDS 217, CS 275, GENE 217)

UNITS:3-4
GRADING:Medical Option (Med-Ltr-CR/NC)
LEVEL:Graduate
GER:—

Analytic and interpretive methods to optimize the transformation of genetic, genomic, and biological data into diagnostics and therapeutics for medicine. Topics: access and utility of publicly available data sources; types of genome-scale measurements in molecular biology and genomic medicine; linking genome-scale data to clinical data and phenotypes; and new questions in biomedicine using bioinformatics. Case studies. Prerequisites: programming ability at the level of CS 106A and familiarity with statistics and biology.

Syllabus for selected term:
View Spring 2027 Syllabus

Sections

1 Term
Lecture 1Open
ID: 25524
0 / 999 enrolled
DAYS:TBD
TIME:TBD
LOCATION:TBD
units

BIOE 217: Translational Bioinformatics (BMDS 217, CS 275, GENE 217)

3-4 units · Medical Option (Med-Ltr-CR/NC)

Analytic and interpretive methods to optimize the transformation of genetic, genomic, and biological data into diagnostics and therapeutics for medicine. Topics: access and utility of publicly available data sources; types of genome-scale measurements in molecular biology and genomic medicine; linking genome-scale data to clinical data and phenotypes; and new questions in biomedicine using bioinformatics. Case studies. Prerequisites: programming ability at the level of CS 106A and familiarity with statistics and biology.

Offered in Spring 2027 at Stanford University.

Spring 2027 sections

  • Lecture — TBA TBA (Graduate)

More BIOE courses

  • BIOE 204: Genetic and Epigenetic Engineering
  • BIOE 209: Mathematical Modeling of Biological Systems (CME 209)
  • BIOE 210: Systems Biology (BIOE 101)
  • BIOE 212: Introduction to Biomedical Informatics Research Methodology (BMDS 212, CS 272, GENE 212)
  • BIOE 213: Stochastic and Nonlinear Dynamics (APPPHYS 223, BIO 223, PHYSICS 223)
  • BIOE 214: Representations and Algorithms for Computational Molecular Biology (BMDS 214, CS 274, GENE 214)
  • BIOE 219: Fundamentals of Regeneration Biology (DBIO 219)
  • BIOE 220: Introduction to Imaging and Image-based Human Anatomy (BMP 220, RAD 220)
  • BIOE 221: Physics and Engineering of Radionuclide-based Medical Imaging (BMP 221, RAD 221)
  • BIOE 222: Physics and Engineering Principles of Multi-modality Molecular Imaging of Living Subjects (BMP 222, RAD 222)
  • BIOE 223: Physics and Engineering of X-Ray Computed Tomography (RAD 223)
  • BIOE 224: Probes and Applications for Multi-modality Molecular Imaging of Living Subjects (BMP 224, RAD 224)

All BIOE courses · All departments