Deep learning has made great progress in many fields. One of the most important fields is the medical field, where we can classify images, detect objects and so on. More specifically, deep learning algorithms entered the field of single-cell classification and revolutionized this field, by classifying the components of the cell and identifying the location of the proteins in it. Due to the presence of large numbers of cells in the human body of different types and sizes, it was difficult to carry out analysis of cells and detection of components using traditional methods, which indicated a research gap that was filled with the introduction of deep learning in this field. We used the Human Atlas dataset which contains 87,224 images of single...
Single cell transcriptomic technologies which capture high dimensional measurements of gene expressi...
AbstractUsing data from 183 public human data sets from PRIDE, a machine learning model was trained ...
Gene expression is manifested through the synthesis of proteins within the cell. The Cell Atlas, wit...
Gene expression is manifested through the synthesis of proteins within the cell. The Cell Atlas, wit...
Pattern recognition and classification of images are key challenges throughout the life sciences. We...
Pattern recognition and classification of images are key challenges throughout the life sciences. We...
Pattern recognition and classification of images are key challenges throughout the life sciences. We...
The Human Protein Atlas is a rich source of location proteomics data. In this work, we present an au...
International audienceA multitude of efforts worldwide aim to create a single cell reference map of ...
International audienceA multitude of efforts worldwide aim to create a single cell reference map of ...
International audienceA multitude of efforts worldwide aim to create a single cell reference map of ...
Predicting subcellular protein localization has become a popular topic due to its utility in underst...
A solution to the Kaggle competition: Human Protein Atlas Image Classification. Using microscopic im...
Identifying localization of proteins and their specific subpopulations associated with certain cellu...
Single cell transcriptomic technologies which capture high dimensional measurements of gene expressi...
Single cell transcriptomic technologies which capture high dimensional measurements of gene expressi...
AbstractUsing data from 183 public human data sets from PRIDE, a machine learning model was trained ...
Gene expression is manifested through the synthesis of proteins within the cell. The Cell Atlas, wit...
Gene expression is manifested through the synthesis of proteins within the cell. The Cell Atlas, wit...
Pattern recognition and classification of images are key challenges throughout the life sciences. We...
Pattern recognition and classification of images are key challenges throughout the life sciences. We...
Pattern recognition and classification of images are key challenges throughout the life sciences. We...
The Human Protein Atlas is a rich source of location proteomics data. In this work, we present an au...
International audienceA multitude of efforts worldwide aim to create a single cell reference map of ...
International audienceA multitude of efforts worldwide aim to create a single cell reference map of ...
International audienceA multitude of efforts worldwide aim to create a single cell reference map of ...
Predicting subcellular protein localization has become a popular topic due to its utility in underst...
A solution to the Kaggle competition: Human Protein Atlas Image Classification. Using microscopic im...
Identifying localization of proteins and their specific subpopulations associated with certain cellu...
Single cell transcriptomic technologies which capture high dimensional measurements of gene expressi...
Single cell transcriptomic technologies which capture high dimensional measurements of gene expressi...
AbstractUsing data from 183 public human data sets from PRIDE, a machine learning model was trained ...
Gene expression is manifested through the synthesis of proteins within the cell. The Cell Atlas, wit...