V-Net: Fully Convolutional Neural Networks for Volumetric Medical Image Segmentation

计算机科学 卷积神经网络 人工智能 分割 Sørensen–骰子系数 直方图 体素 掷骰子 模式识别(心理学) 图像分割 人工神经网络 匹配(统计) 计算机视觉 图像(数学) 数学 统计 几何学
作者
Fausto Milletarì,Nassir Navab,Seyed‐Ahmad Ahmadi
出处
期刊:International Conference on 3D Vision 卷期号:: 565-571 被引量:8145
标识
DOI:10.1109/3dv.2016.79
摘要

Convolutional Neural Networks (CNNs) have been recently employed to solve problems from both the computer vision and medical image analysis fields. Despite their popularity, most approaches are only able to process 2D images while most medical data used in clinical practice consists of 3D volumes. In this work we propose an approach to 3D image segmentation based on a volumetric, fully convolutional, neural network. Our CNN is trained end-to-end on MRI volumes depicting prostate, and learns to predict segmentation for the whole volume at once. We introduce a novel objective function, that we optimise during training, based on Dice coefficient. In this way we can deal with situations where there is a strong imbalance between the number of foreground and background voxels. To cope with the limited number of annotated volumes available for training, we augment the data applying random non-linear transformations and histogram matching. We show in our experimental evaluation that our approach achieves good performances on challenging test data while requiring only a fraction of the processing time needed by other previous methods.
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