Dynamic Chest Image Analysis: Evaluation of Model-Based Pulmonary Perfusion Analysis With Pyramid Images

Abstract

Dynamic Chest Image Analysis aims to develop model-based computer analysis and visualization methods for showing focal and general abnormalities of lung ventilation and perfusion based on a sequence of digital chest fluoroscopy frames collected with the Dynamic Pulmonary Imaging technique 18,5,17,6. We have proposed and evaluated a multiresolutional method with an explicit ventilation model based on pyramid images for ventilation analysis. We have further extended the method for ventilation analysis to pulmonary perfusion. This paper focuses on the clinical evaluation of our method for perfusion analysis. Three clinical cases are included to illustrate the effects of contrast media in perfusion analysis and a dozen of clinical cases without using contrast media are used for evaluation. Our clinical evaluation shows that our method is effective for pulmonary embolism, demonstrating consistent correlations with computed tomography (CT) and nuclear medicine (NM) studies. This performance is the consequence of the idea that the cardiac information recorded in the perfusion image sequence may be utilized to accelerate pulmonary perfusion analysis and improve its sensitivity in detecting pulmonary embolism.

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Document Details

Document Type
Technical Report
Publication Date
Oct 25, 2001
Accession Number
ADA412606

Entities

People

  • Aaro Kiuru
  • Erkki Svedstroem
  • Jianming Liang
  • Martti Kormano
  • Timo Jarvi

Organizations

  • Turku Centre for Computer Science

Tags

Communities of Interest

  • Biomedical
  • Engineered Resilient Systems

DTIC Thesaurus Topics

  • Amplitude
  • Arteries
  • Blood
  • Blood Flow
  • Computer Science
  • Contrast Media
  • Diagnostic Imaging
  • Embolism And Thrombosis
  • Health Services
  • Imaging Techniques
  • Lung Diseases
  • Nuclear Medicine
  • Physical Properties
  • Sinusoidal Functions
  • Veins
  • X Rays
  • X-Ray Computed Tomography

Readers

  • Computational Modeling and Simulation
  • Image Processing and Computer Vision.
  • Trauma Surgery or Emergency Medicine.