Frontiers in Molecular Biosciences · 2021 · 16 citations · 18 references
Convolutional Neural NetworkMedical Image SegmentationEngineeringMachine LearningMulti-task ClassificationDigital PathologyDiagnosisSurgeryEndoscopic ImagingImage ClassificationImage AnalysisSegmentation NetworkRadiologyMedical ImagingCapsule EndoscopyComputational PathologyDeep LearningMedical Image ComputingMotion BlurComputer VisionEndoscopyInnovative DiagnosticsComputer-aided DiagnosisInterventional EndoscopyMedicineMedical Image Analysis
Capsule endoscopy is a leading diagnostic tool for small bowel lesions which faces certain challenges such as time-consuming interpretation and harsh optical environment inside the small intestine. Specialists unavoidably waste lots of time on searching for a high clearness degree image for accurate diagnostics. However, current clearness degree classification methods are based on either traditional attributes or an unexplainable deep neural network. In this paper, we propose a multi-task framework, called the multi-task classification and segmentation network (MTCSN), to achieve joint learning of clearness degree (CD) and tissue semantic segmentation (TSS) for the first time. In the MTCSN, the CD helps to generate better refined TSS, while TSS provides an explicable semantic map to better classify the CD. In addition, we present a new benchmark, named the Capsule-Endoscopy Crohn’s Disease dataset, which introduces the challenges faced in the real world including motion blur, excreta occlusion, reflection, and various complex alimentary scenes that are widely acknowledged in endoscopy examination. Extensive experiments and ablation studies report the significant performance gains of the MTCSN over state-of-the-art methods.
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Deep Residual Learning for Image Recognition
Kaiming He, Xiangyu Zhang, Shaoqing Ren et al. · 2016 · 214.9K citations · Full text
Image Classification, Deep Neural Networks, Machine Vision +14
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