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Brain Tumor Segmentation Using Generative Adversarial Networks

delete2024-01-01
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OA
AI
A
Abid Ali
M
Muhammad Sharif
C
Ch. Muhammad Shahzad Faisal
A
Atif Rizwan
G
Ghada Atteia
DOI:10.1109/ACCESS.2024.3450593delete
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Abstract

Abstract

En 中文
Deep learning has played a vital role in advancing medical research, particularly in brain tumor segmentation. Despite using numerous deep learning algorithms for this purpose, accurately and reliably segmenting brain tumors remains a significant challenge. Segmentation of precise tumors is essential for the effective treatment of brain diseases. While deep learning offers a range of algorithms for segmentation, they still face limitations when analyzing medical images due to the variations in tumor shape, size, and location. This study proposes a deep learning approach combining a Generative Adversarial Network (GAN) with transfer learning and auto-encoder techniques to enhance brain tumor segmentation. The GAN incorporates a generator and discriminator to generate superior segmentation outcomes. In the generator, we applied downsampling and upsampling for tumor segmentation. In addition, an auto-encoder is applied in which the encoder retains as much information as possible and then the decoder with those encodings reconstructs the image. The transfer learning technique is applied at the bottleneck using the DenseNet model. Combining auto-encoder techniques with transfer learning methodologies in GANs feature learning is enhanced, training time is reduced, and stability is increased. In this work, we enhanced the accuracy of brain tumor segmentation and even achieved better results for tumors having small sizes. We train and evaluate our proposed model using the publicly available BraTS 2021 dataset. The experimental result shows a dice score of 0.94 for the whole tumor, 0.86 for the tumor core, and 0.82 for the enhancing tumor. It is also shown that we achieve 2% to 4% higher accuracy than other methods.
Keywords:
Tumors
Image segmentation
Brain modeling
Deep learning
Generative adversarial networks
Accuracy
Transfer learning
Autoencoders
GAN
auto-encoder
up sampling
down sampling
transfer learning
BraTS
DenseNet

Journal

IEEE Access cover
IEEE Access
IF:
3.6
Papers:
9.8W
Citations:
29.4W

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Princess Nourah bint Abdulrahman University
Scholars:
7.9K
Papers: 9.3K
Citations: 10
C
comsats university islamabad (cui)
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1.1W
Papers: 1.1W
Citations: 7
K
kyung hee university
Scholars:
2.3W
Papers: 2.2W
Citations: 234
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