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Fission is the division of a single entity into two or more parts, which regenerate into separate entities that resemble the original. Organisms in the Archaea and Bacteria domains reproduce using binary fission, in which a parent cell splits into two parts that can each grow to the size of the original parent cell. This asexual method of reproduction produces cells that are all genetically identical.
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Electrochemotherapy of Tumours
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An extensive study for binary characterisation of adrenal tumours.

Hasan Koyuncu1, Rahime Ceylan2, Semih Asoglu3

  • 1Electrical & Electronics Engineering Department, Faculty of Engineering and Natural Sciences, Konya Technical University, 42250, Konya, Turkey. hasankoyuncu@selcuk.edu.tr.

Medical & Biological Engineering & Computing
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PubMed
Summary

This study developed a new framework for adrenal tumor classification using dynamic computed tomography (CT) images. The method accurately distinguishes between malignant and benign adrenal tumors, potentially reducing the need for invasive biopsies.

Keywords:
Adrenal tumoursComputed tomographyHybrid classifierOptimisationTumour classification

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Area of Science:

  • Medical Imaging
  • Oncology
  • Computer-Aided Diagnosis

Background:

  • Adrenal tumors present diagnostic challenges due to overlapping imaging features.
  • Current diagnostic methods like biopsy carry risks of injury and complications.
  • Accurate characterization of adrenal tumors is crucial for appropriate treatment planning.

Purpose of the Study:

  • To develop a non-invasive method for binary characterization of adrenal tumors using dynamic computed tomography (CT) images.
  • To exclude the need for additional imaging modalities and invasive biopsy procedures.
  • To identify the most effective image features for adrenal tumor classification.

Main Methods:

  • Utilized dynamic CT images from a dataset of 8 adrenal tumor subtypes.
  • Investigated histogram, grey level co-occurrence matrix (GLCM), and wavelet-based features.
  • Employed optimized neural networks and four classification algorithms for binary classification.
  • Evaluated performance using accuracy, sensitivity, specificity, and Area Under the Curve (AUC).

Main Results:

  • The proposed framework achieved success rates of 80.7% for accuracy, 75% for sensitivity, 82.22% for specificity, and 78.61% for AUC.
  • Identified specific image features that are most effective for adrenal tumor identification.
  • Demonstrated the feasibility of classifying adrenal tumors without invasive procedures.

Conclusions:

  • The developed framework offers an efficient and accurate approach for the non-invasive binary characterization of adrenal tumors.
  • This method has the potential to reduce reliance on invasive biopsy, thereby minimizing patient risk.
  • Further research can build upon these findings to enhance diagnostic capabilities in adrenal tumor management.