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Biomedical Image Segmentation: A Systematic Literature Review of Deep Learning Based Object Detection Methods

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arxiv 2408.03393 v2 pith:2VTZAZOR submitted 2024-08-06 eess.IV cs.CVcs.GR

classification eess.IVcs.CVcs.GR
keywords detectionsegmentationmethodsmodelsbiomedicaldeepimagelearning
verification ladder T0 review T1 audit T2 compute T3 formal
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Biomedical image segmentation plays a vital role in diagnosis of diseases across various organs. Deep learning-based object detection methods are commonly used for such segmentation. There exists an extensive research in this topic. However, there is no standard review on this topic. Existing surveys often lack a standardized approach or focus on broader segmentation techniques. In this paper, we conducted a systematic literature review (SLR), collected and analysed 148 articles that explore deep learning object detection methods for biomedical image segmentation. We critically analyzed these methods, identified the key challenges, and discussed the future directions. From the selected articles we extracted the results including the deep learning models, targeted imaging modalities, targeted diseases, and the metrics for the analysis of the methods. The results have been presented in tabular and/or charted forms. The results are presented in three major categories including two stage detection models, one stage detection models and point-based detection models. Each article is individually analyzed along with its pros and cons. Finally, we discuss open challenges, potential benefits, and future research directions. This SLR aims to provide the research community with a quick yet deeper understanding of these segmentation models, ultimately facilitating the development of more powerful solutions for biomedical image analysis.

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  1. Robust Noisy Pseudo-label Learning for Semi-supervised Medical Image Segmentation Using Diffusion Model

    cs.CV 2025-07 conditional novelty 5.0 of 10

    A diffusion-based medical image segmentation model with prototype contrastive consistency improves mIoU on Endoscapes2023 and on the new MOSXAV angiography benchmark.

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