Image Processing and Computer Aided Diagnosis in Computed Tomography of the Breast

Abstract

Dedicated breast CT imaging is a novel breast imaging modality, which may improve lesion detection with a comparable radiation dose to conventional mammography. However, due to its cone beam geometry, breast CT suffers from image degradation due to scatter radiation. Moreover, the breast CT images divide the dose of mammography among hundreds of projection views, resulting in considerable quantum noise. It is therefore desirable to reduce scatter and noise in the reconstructed breast volume without loss of spatial resolution. Several new image-processing techniques were developed based on the unique physical properties of this modality. Using images obtained on a full field digital mammography system, the Gaussian noise model demonstrated effective scatter removal. A PDE technique taking into the account the non-uniform distribution of the noise in the projection image after the preprocessing step provides excellent denoised data with sharp edges. Applying a denoising technique before reconstruction provides better images than after reconstruction. The preliminary ROC study showed that with a fixed size lesion in real anatomical backgrounds, PDE-denoised images had higher detectability, higher CNR and better qualitative appearance. These promising new techniques for noise and scatter compensation pave the way for future implementations of dedicated breast CT.

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Document Details

Document Type
Technical Report
Publication Date
Oct 01, 2007
Accession Number
ADA489806

Entities

People

  • Jessie Q. Xia

Organizations

  • Duke University

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Breast Cancer
  • Change Detection
  • Computational Science
  • Databases
  • Detection
  • Detectors
  • Diagnostic Imaging
  • Geometry
  • Health Services
  • Image Processing
  • Imaging Techniques
  • Information Processing
  • Medical Personnel
  • Monte Carlo Method
  • Radiography
  • Tomography
  • X-Ray Computed Tomography

Fields of Study

  • Medicine
  • Physics

Readers

  • Image Processing and Computer Vision.
  • Medical Imaging.

Technology Areas

  • Quantum Computing