Skip to content

Theory of edge detection

David Marr, Ellen C. Hildreth

Proceedings of the Royal Society B Biological Sciences · 1980 · 6,275 citations

Abstract

A theory of edge detection is presented. The analysis proceeds in two parts. (1) Intensity changes, which occur in a natural image over a wide range of scales, are detected separately at different scales. An appropriate filter for this purpose at a given scale is found to be the second derivative of a Gaussian, and it is shown that, provided some simple conditions are satisfied, these primary filters need not be orientation-dependent. Thus, intensity changes at a given scale are best detected by finding the zero values of delta 2G(x,y)*I(x,y) for image I, where G(x,y) is a two-dimensional Gaussian distribution and delta 2 is the Laplacian. The intensity changes thus discovered in each of the channels are then represented by oriented primitives called zero-crossing segments, and evidence is given that this representation is complete. (2) Intensity changes in images arise from surface discontinuities or from reflectance or illumination boundaries, and these all have the property that they are spatially. Because of this, the zero-crossing segments from the different channels are not independent, and rules are deduced for combining them into a description of the image. This description is called the raw primal sketch. The theory explains several basic psychophysical findings, and the operation of forming oriented zero-crossing segments from the output of centre-surround delta 2G filters acting on the image forms the basis for a physiological model of simple cells (see Marr & Ullman 1979).

Cite this paper

Marr, D., & Hildreth, E. C. (1980). Theory of edge detection. Proceedings of the Royal Society B Biological Sciences, 207(1167), 187–217. https://doi.org/10.1098/rspb.1980.0020

Read it with every claim anchored

Add this paper to a project, ask questions of it, and get answers that point to the exact passage.

Start free
  1. Neural networks and physical systems with emergent collective computational abilities.1982
  2. An Integrative Theory of Prefrontal Cortex Function2001
  3. The perceptron: A probabilistic model for information storage and organization in the brain.1958
  4. FieldTrip: Open Source Software for Advanced Analysis of MEG, EEG, and Invasive Electrophysiological Data2010
  5. A model of saliency-based visual attention for rapid scene analysis1998

Metadata from OpenAlex (CC0). Citations are generated from the published record.