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Quantitative grading of rat esophageal carcinogenesis using computer-assisted image tile analysis
C W Boone1, G D Stoner, J V Bacus
1Chemopreventive Agent Development Research Group, Division of Cancer Prevention, National Cancer Institute, Bethesda, Maryland 20892-7322, USA.
Summary
Computer analysis accurately grades esophageal dysplasia in rats, aiding the search for new cancer prevention drugs. This method quantifies neoplastic changes, offering sensitive and objective measurements for drug screening.
Area of Science:
- Oncology
- Biotechnology
- Medical Imaging
Background:
- Esophageal intraepithelial neoplasia (dysplasia) is a precursor to cancer.
- N-nitrosomethybenzylamine (NMBA) is used to induce esophageal carcinogenesis in rat models.
- Quantitative image analysis offers objective methods for evaluating neoplastic changes.
Purpose of the Study:
- To grade esophageal intraepithelial neoplasia using computer-assisted quantitative image tile analysis.
- To validate grading parameters for screening chemopreventive agents in a rat model.
- To assess the sensitivity and objectivity of the developed grading method.
Main Methods:
- Computer divides neoplastic epithelium images into small tiles for analysis.
- Quantitatively measures four tissue features within each tile.
- Calculates a tile grade using weighted feature measurements and Z-scores.
- Determines weights via Fisher linear discriminant analysis comparing neoplastic and normal epithelium.
Main Results:
- Two grading parameters, mean tile grade (MTG) and %TG>4SD, were validated.
- %TG>4SD correlated with tumor incidence and multiplicity after NMBA treatment.
- The chemopreventive agent phenethylisothiocyanate reduced MTG, tumor incidence, and multiplicity.
Conclusions:
- Computer-assisted quantitative image tile analysis provides sensitive and objective grading of esophageal neoplasia.
- MTG and %TG>4SD are effective parameters for evaluating chemopreventive agents in the NMBA-induced rat model.
- This method allows for precise comparison of neoplastic changes before and after treatment.