Evidential Calibrated Uncertainty-Guided Interactive Segmentation paradigm for Ultrasound Images

Fuente: arXiv
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Main Authors: Shang, Jiang, Wu, Yuanmeng, Han, Xiaoxiang, Chen, Xi, Zhang, Qi
Format: Preprint
Published: 2025
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author Shang, Jiang
Wu, Yuanmeng
Han, Xiaoxiang
Chen, Xi
Zhang, Qi
author_facet Shang, Jiang
Wu, Yuanmeng
Han, Xiaoxiang
Chen, Xi
Zhang, Qi
contents Accurate and robust ultrasound image segmentation is critical for computer-aided diagnostic systems. Nevertheless, the inherent challenges of ultrasound imaging, such as blurry boundaries and speckle noise, often cause traditional segmentation methods to struggle with performance. Despite recent advancements in universal image segmentation, such as the Segment Anything Model, existing interactive segmentation methods still suffer from inefficiency and lack of specialization. These methods rely heavily on extensive accurate manual or random sampling prompts for interaction, necessitating numerous prompts and iterations to reach satisfactory performance. In response to this challenge, we propose the Evidential Uncertainty-Guided Interactive Segmentation (EUGIS), an end-to-end, efficient tiered interactive segmentation paradigm based on evidential uncertainty estimation for ultrasound image segmentation. Specifically, EUGIS harnesses evidence-based uncertainty estimation, grounded in Dempster-Shafer theory and Subjective Logic, to gauge the level of uncertainty in the predictions of model for different regions. By prioritizing sampling the high-uncertainty region, our method can effectively simulate the interactive behavior of well-trained radiologists, enhancing the targeted of sampling while reducing the number of prompts and iterations required.Additionally, we propose a trainable calibration mechanism for uncertainty estimation, which can further optimize the boundary between certainty and uncertainty, thereby enhancing the confidence of uncertainty estimation.
format Preprint
id arxiv_https___arxiv_org_abs_2501_01072
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Evidential Calibrated Uncertainty-Guided Interactive Segmentation paradigm for Ultrasound Images
Shang, Jiang
Wu, Yuanmeng
Han, Xiaoxiang
Chen, Xi
Zhang, Qi
Computer Vision and Pattern Recognition
Accurate and robust ultrasound image segmentation is critical for computer-aided diagnostic systems. Nevertheless, the inherent challenges of ultrasound imaging, such as blurry boundaries and speckle noise, often cause traditional segmentation methods to struggle with performance. Despite recent advancements in universal image segmentation, such as the Segment Anything Model, existing interactive segmentation methods still suffer from inefficiency and lack of specialization. These methods rely heavily on extensive accurate manual or random sampling prompts for interaction, necessitating numerous prompts and iterations to reach satisfactory performance. In response to this challenge, we propose the Evidential Uncertainty-Guided Interactive Segmentation (EUGIS), an end-to-end, efficient tiered interactive segmentation paradigm based on evidential uncertainty estimation for ultrasound image segmentation. Specifically, EUGIS harnesses evidence-based uncertainty estimation, grounded in Dempster-Shafer theory and Subjective Logic, to gauge the level of uncertainty in the predictions of model for different regions. By prioritizing sampling the high-uncertainty region, our method can effectively simulate the interactive behavior of well-trained radiologists, enhancing the targeted of sampling while reducing the number of prompts and iterations required.Additionally, we propose a trainable calibration mechanism for uncertainty estimation, which can further optimize the boundary between certainty and uncertainty, thereby enhancing the confidence of uncertainty estimation.
title Evidential Calibrated Uncertainty-Guided Interactive Segmentation paradigm for Ultrasound Images
topic Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2501.01072