AI Article Synopsis

  • Brain tumors are a major global health threat, with low survival rates; only 12% of adults diagnosed live beyond five years.
  • This research presents a hyperparametric convolutional neural network (CNN) model designed to improve brain tumor detection by fine-tuning various hyperparameters for better accuracy and reduced complexity.
  • Tested on three MRI datasets, the CNN achieved impressive average scores of 97% across key performance metrics, enhancing diagnostic tools for medical professionals and ultimately aiming to improve patient outcomes.

Article Abstract

Brain tumors are a leading cause of death globally, with numerous types varying in malignancy, and only 12% of adults diagnosed with brain cancer survive beyond five years. This research introduces a hyperparametric convolutional neural network (CNN) model to identify brain tumors, with significant practical implications. By fine-tuning the hyperparameters of the CNN model, we optimize feature extraction and systematically reduce model complexity, thereby enhancing the accuracy of brain tumor diagnosis. The critical hyperparameters include batch size, layer counts, learning rate, activation functions, pooling strategies, padding, and filter size. The hyperparameter-tuned CNN model was trained on three different brain MRI datasets available at Kaggle, producing outstanding performance scores, with an average value of 97% for accuracy, precision, recall, and F1-score. Our optimized model is effective, as demonstrated by our methodical comparisons with state-of-the-art approaches. Our hyperparameter modifications enhanced the model performance and strengthened its capacity for generalization, giving medical practitioners a more accurate and effective tool for making crucial judgments regarding brain tumor diagnosis. Our model is a significant step in the right direction toward trustworthy and accurate medical diagnosis, with practical implications for improving patient outcomes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11353951PMC
http://dx.doi.org/10.3390/diagnostics14161714DOI Listing

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