Stanford Root

Schedule

Stanford Root

Schedule

BIOE 222

Physics and Engineering Principles of Multi-modality Molecular Imaging of Living Subjects (BMP 222, RAD 222)

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

Physics and Engineering Principles of Multi-modality Molecular Imaging of Living Subjects (RAD 222). Focuses on instruments, algorithms and other technologies for non-invasive imaging of molecular processes of disease in living subjects. Introduces research and clinical molecular imaging modalities, including PET, SPECT, MRI, CT, Ultrasound, Optics, and Photoacoustics. For each modality, lectures cover the basics of the origin and properties of imaging signal generation, instrumentation physics and engineering of signal detection, signal processing, image reconstruction, image data quantification, applications of machine learning, and applications of molecular imaging in medicine and biology. This course is designed for science and engineering students, but medical students are welcome.

Syllabus for selected term:
View Autumn 2026 Syllabus

Sections

1 Term
Lecture 1Open
ID: 1918
0 / 50 enrolled
DAYS:Monday, Friday
TIME:1:30 PM – 2:50 PM
LOCATION:Departmental Room
INSTRUCTOR:
Levin, Craig
units

BIOE 222: Physics and Engineering Principles of Multi-modality Molecular Imaging of Living Subjects (BMP 222, RAD 222)

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

Physics and Engineering Principles of Multi-modality Molecular Imaging of Living Subjects (RAD 222). Focuses on instruments, algorithms and other technologies for non-invasive imaging of molecular processes of disease in living subjects. Introduces research and clinical molecular imaging modalities, including PET, SPECT, MRI, CT, Ultrasound, Optics, and Photoacoustics. For each modality, lectures cover the basics of the origin and properties of imaging signal generation, instrumentation physics and engineering of signal detection, signal processing, image reconstruction, image data quantification, applications of machine learning, and applications of molecular imaging in medicine and biology. This course is designed for science and engineering students, but medical students are welcome.

Offered in Autumn 2026 at Stanford University.

Autumn 2026 sections

  • Lecture — Monday Friday 1:30 PM – 2:50 PM — Departmental Room — Levin, Craig (Graduate)

More BIOE courses

  • 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 217: Translational Bioinformatics (BMDS 217, CS 275, GENE 217)
  • 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 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)
  • BIOE 226: MRI Spin Physics, Relaxation Theory, and Contrast Mechanisms (BMP 226, RAD 226)
  • BIOE 230: Measurements, Statistics, and Probability
  • BIOE 231: Protein Engineering (BIOE 331)
  • BIOE 232: Advanced Imaging Lab in Biophysics (APPPHYS 232, BIO 132, BIO 232, BIOPHYS 232, GENE 232)

All BIOE courses · All departments