MC-Net: Multiple max-pooling integration module and cross multi-scale deconvolution network
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摘要
To better retain the deep features of an image and solve the sparsity problem of the end-to-end segmentation model, we propose a new deep convolutional network model for medical image pixel segmentation, called MC-Net. The core of this network model consists of four parts, namely, an encoder network, a multiple max-pooling integration module, a cross multiscale deconvolution decoder network and a pixel-level classification layer. Each max-pooling layer (the pooling size of each layer is different) is spliced after each convolution to achieve the translation invariance of the feature maps of each submodule. The multiscale convolution of each submodule in the decoder network is cross-fused with the feature maps generated by the corresponding multiscale convolution in the encoder network. Using the above feature map processing methods solves the sparsity problem after the max-pooling layer-generating matrix and enhances the robustness of the classification. We compare our proposed model with the well-known Fully Convolutional Networks for Semantic Segmentation (FCNs), DecovNet, PSPNet, U-net, SgeNet and other state-of-the-art segmentation networks such as HyperDenseNet, MS-Dual, Espnetv2, Denseaspp using one binary dataset and two multiclass dataset and obtain encouraging experimental results.
论文关键词:Multiple max-pooling integration module,Cross multiscale deconvolution network,Deep learning,End-to-end
论文评审过程:Received 16 March 2021, Revised 12 August 2021, Accepted 29 August 2021, Available online 1 September 2021, Version of Record 8 September 2021.
论文官网地址:https://doi.org/10.1016/j.knosys.2021.107456