Title :
Local contralateral subtraction based on bilateral symmetry of lung for reduction of false positives in computerized detection of pulmonary nodules
Author :
Yoshida, Hiroyuki
Author_Institution :
Dept. of Radiol., Univ. of Chicago, IL, USA
fDate :
5/1/2004 12:00:00 AM
Abstract :
A novel method called local contralateral subtraction has been developed for the removal of normal anatomic structures in chest radiographs based on the symmetry between the left and right lung regions. The method was oriented to the reduction of false positives reported by a computer-aided diagnosis (CAD) scheme for detection of lung nodules in chest radiographs. In our method, two regions of interest (ROIs) are extracted, one from the position where a nodule candidate is located, and the other from the anatomically corresponding location in the opposite lung, which contains similar normal structures. A wavelet-based, multiresolution image registration method is employed for matching the two ROIs, and subtraction is performed. If no structure remains in the subtracted ROI, then the original ROI is identified as negative (i.e., it contains only normal structures); otherwise, it is regarded as positive (i.e., it contains a nodule). A measure that quantifies the remaining structures was developed to distinguish between nodules and false positives. Application of the method to clinical chest radiographs showed that it was effective in eliminating normal anatomic structures and reducing the number of false detections in the CAD scheme for detection of lung nodules.
Keywords :
diagnostic radiography; feature extraction; image registration; lung; medical image processing; bilateral lung symmetry; chest radiographs; computer-aided diagnosis; computerized pulmonary nodule detection; false positive reduction; local contralateral subtraction; medical diagnosis; wavelet-based multiresolution image registration; Biomedical image processing; Biomedical measurements; Cancer detection; Computer aided diagnosis; Diagnostic radiography; Feature extraction; Image registration; Image resolution; Lungs; Medical diagnosis; Algorithms; Artifacts; Coin Lesion, Pulmonary; Diagnosis, Computer-Assisted; False Positive Reactions; Humans; Lung; Quality Control; Radiographic Image Enhancement; Radiographic Image Interpretation, Computer-Assisted; Radiography, Thoracic; Reproducibility of Results; Retrospective Studies; Sensitivity and Specificity; Signal Processing, Computer-Assisted; Subtraction Technique;
Journal_Title :
Biomedical Engineering, IEEE Transactions on
DOI :
10.1109/TBME.2004.824136