Principles of Radiation Interactions

A schematic diagram of a typical medical accelerator used in cancer radiotherapy.

A schematic diagram of a typical medical accelerator used in cancer radiotherapy. (Image courtesy of the Stanford Linear Accelerator Center.)

Instructor(s)

MIT Course Number

22.55J / HST.560J

As Taught In

Fall 2004

Level

Graduate

Cite This Course

Course Description

Course Features

Course Description

The central theme of this course is the interaction of radiation with biological material. The course is intended to provide a broad understanding of how different types of radiation deposit energy, including the creation and behavior of secondary radiations; of how radiation affects cells and why the different types of radiation have very different biological effects. Topics will include: the effects of radiation on biological systems including DNA damage; in vitro cell survival models; and in vivo mammalian systems. The course covers radiation therapy, radiation syndromes in humans and carcinogenesis. Environmental radiation sources on earth and in space, and aspects of radiation protection are also discussed. Examples from the current literature will be used to supplement lecture material.

Related Content

Jeffrey Coderre. 22.55J Principles of Radiation Interactions. Fall 2004. Massachusetts Institute of Technology: MIT OpenCourseWare, https://ocw.mit.edu. License: Creative Commons BY-NC-SA.


For more information about using these materials and the Creative Commons license, see our Terms of Use.


Close