Quantitative analysis of cell mitosis, the process by which cells regenerate, is important in cell biology. Automatic cell mitosis detection can greatly facilitate the investigation of cell life cycle. However, cell-type diversity, cell non-rigid deformation and high cell density pose difficulties on handcrafting visual features for traditional approaches. Aided by massively captured microscopy image sequences, deep neural networks have recently become available for automatic cell mitosis detection. This paper proposes an end-to-end framework named as F3D-CNN for mitosis detection, and F3D-CNN is directly trained from data without requiring designing domain dependent features. Well-trained F3D-CNN first filters out potential mitosis events ...
Breast cancer (BC) is a prevalent disease worldwide, and accurate diagnoses are vital for successful...
Meningioma represent more than one-third of all primary central nervous system (CNS) tumors, and it ...
Live-cell imaging has opened an exciting window into the role cellular heterogeneity plays in dynami...
The mitotic activity index is a key prognostic measure in tumour grading. Microscopy based detection...
The computer-aided analysis in the medical imaging field has attracted a lot of attention for the pa...
In the case of breast cancer, according to the Nottingham Grading System, counting mitotic cells is ...
The breast cancer microscopy images acquire information about the patient’s ailment, and the automat...
The number of mitoses per tissue area gives an important aggressiveness indication of the invasive b...
We show that deep convolutional neural networks combined with nonlinear dimension reduction enable r...
We propose a Hierarchical Convolution Neural Network (HCNN) for mitosis event detection in time-laps...
International audienceThe detection of cancer stem-like cells (CSCs) is mainly based on molecular ma...
Breast cancer (BCa) grading plays an important role in predicting disease aggressiveness and patient...
We introduce machine learning (ML) to perform classifcation and quantitation of images of nuclei fro...
Understanding biology paves the way for discovering drugs targeting deadly diseases like cancer, and...
Cell migration and proliferation play an essential role in wound healing, development, and tumorigen...
Breast cancer (BC) is a prevalent disease worldwide, and accurate diagnoses are vital for successful...
Meningioma represent more than one-third of all primary central nervous system (CNS) tumors, and it ...
Live-cell imaging has opened an exciting window into the role cellular heterogeneity plays in dynami...
The mitotic activity index is a key prognostic measure in tumour grading. Microscopy based detection...
The computer-aided analysis in the medical imaging field has attracted a lot of attention for the pa...
In the case of breast cancer, according to the Nottingham Grading System, counting mitotic cells is ...
The breast cancer microscopy images acquire information about the patient’s ailment, and the automat...
The number of mitoses per tissue area gives an important aggressiveness indication of the invasive b...
We show that deep convolutional neural networks combined with nonlinear dimension reduction enable r...
We propose a Hierarchical Convolution Neural Network (HCNN) for mitosis event detection in time-laps...
International audienceThe detection of cancer stem-like cells (CSCs) is mainly based on molecular ma...
Breast cancer (BCa) grading plays an important role in predicting disease aggressiveness and patient...
We introduce machine learning (ML) to perform classifcation and quantitation of images of nuclei fro...
Understanding biology paves the way for discovering drugs targeting deadly diseases like cancer, and...
Cell migration and proliferation play an essential role in wound healing, development, and tumorigen...
Breast cancer (BC) is a prevalent disease worldwide, and accurate diagnoses are vital for successful...
Meningioma represent more than one-third of all primary central nervous system (CNS) tumors, and it ...
Live-cell imaging has opened an exciting window into the role cellular heterogeneity plays in dynami...