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Deep Learning for Semantic Segmentation of 3D Ultrasound Data

19 January 2026
Chenyu Liu
Marco Cecotti
Harikrishnan Vijayakumar
Patrick Robinson
James Barson
Mihai Caleap
    3DPC
ArXiv (abs)PDFHTMLGithub (52163★)
Main:14 Pages
11 Figures
9 Tables
Abstract

Developing cost-efficient and reliable perception systems remains a central challenge for automated vehicles. LiDAR and camera-based systems dominate, yet they present trade-offs in cost, robustness and performance under adverse conditions. This work introduces a novel framework for learning-based 3D semantic segmentation using Calyo Pulse, a modular, solid-state 3D ultrasound sensor system for use in harsh and cluttered environments. A 3D U-Net architecture is introduced and trained on the spatial ultrasound data for volumetric segmentation. Results demonstrate robust segmentation performance from Calyo Pulse sensors, with potential for further improvement through larger datasets, refined ground truth, and weighted loss functions. Importantly, this study highlights 3D ultrasound sensing as a promising complementary modality for reliable autonomy.

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