Computerized nuclear morphometry of hepatocellular carcinoma and its relation to proliferative activity
Author:
Publisher
Wiley
Subject
Oncology,General Medicine,Surgery
Reference19 articles.
1. DNA ploidy pattern in human chronic liver diseases and hepatic nodular lesions. Flow cytometric analysis on echo-guided needle liver biopsy
2. Changes in the expression of Sialyl-Lewisx, a hepatic necroinflammation-associated carbohydrate neoantigen, in human hepatocellular carcinomas
3. Loss of the Tumor Suppressor p53 Gene at the Liver Cirrhosis Stage in Japanese Patients with Hepatocellular Carcinoma
4. Relationship between loss of heterozygosity of tumor suppressor genes and histologic differentiation in hepatocellular carcinoma
5. Correlation of nuclear morphometry with progression of breast cancer
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1. Immunohistochemical and electron microscopic morphometric image analysis of hepatocellular carcinoma in association of HCV infection;Ultrastructural Pathology;2018-02-09
2. Nuclear morphometry in histological specimens of canine prostate cancer: Correlation with histological subtypes, Gleason score, methods of collection and survival time;Research in Veterinary Science;2017-10
3. General Aspects of Liver Regeneration and Hepatobiliary Cancer Growth;Tumors and Tumor-Like Lesions of the Hepatobiliary Tract;2016-10-20
4. General Aspects of Liver Regeneration and Hepatobiliary Cancer Growth;Tumors and Tumor-Like Lesions of the Hepatobiliary Tract;2016
5. Nuclear shape descriptors by automated morphometry may distinguish aggressive variants of squamous cell carcinoma from relatively benign skin proliferative lesions: a pilot study;Tumor Biology;2015-03-10
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