Study discovers method to classify febrile illness with a single blood sample
Researchers trained machine learning (ML) models to analyze RNA molecular signatures in patients’ blood.
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Researchers trained machine learning (ML) models to analyze RNA molecular signatures in patients’ blood.
A new study led by researchers at Karolinska Institutet in Sweden has examined how T cells of the immune system are affected by weightlessness.
Short-lived proteins control gene expression in cells to carry out a number of vital tasks, from helping the brain form connections to helping the body mount an immune defense.
Imperial College introduces a groundbreaking blood test, using gene expression to decode fevers in children and offer swift disease diagnosis.
The Picower Institute for Learning and Memory found that the two closely related neuronal subtypes differed from each other in how they expressed more than 800 genes. By manipulating genes whose expression differed most prominently, the scientists were then able to show how they produced several of the observable differences between the cells.