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Performance Analysis of Deep Learning Models for Femur Segmentation in MRI Scan

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arxiv 2504.04066 v1 pith:MMX2Q6W5 submitted 2025-04-05 eess.IV cs.CV

classification eess.IVcs.CV
keywords performancesegmentationu-netattentionmodelsfemurlearningregions
verification ladder T0 review T1 audit T2 compute T3 formal
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Convolutional neural networks like U-Net excel in medical image segmentation, while attention mechanisms and KAN enhance feature extraction. Meta's SAM 2 uses Vision Transformers for prompt-based segmentation without fine-tuning. However, biases in these models impact generalization with limited data. In this study, we systematically evaluate and compare the performance of three CNN-based models, i.e., U-Net, Attention U-Net, and U-KAN, and one transformer-based model, i.e., SAM 2 for segmenting femur bone structures in MRI scan. The dataset comprises 11,164 MRI scans with detailed annotations of femoral regions. Performance is assessed using the Dice Similarity Coefficient, which ranges from 0.932 to 0.954. Attention U-Net achieves the highest overall scores, while U-KAN demonstrated superior performance in anatomical regions with a smaller region of interest, leveraging its enhanced learning capacity to improve segmentation accuracy.

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  1. XAG-Net: A Cross-Slice Attention and Skip Gating Network for 2.5D Femur MRI Segmentation

    cs.CV 2025-08 conditional novelty 5.0 of 10

    A 2.5D U-Net with pixel-wise cross-slice attention and skip attention gating achieves Dice 0.9535 on a private femur MRI dataset, outperforming compared 2D, 2.5D, and 3D baselines in full-scan evaluation.

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