MIT scientists have developed a new 3D human brain tissue model that could change how researchers study neurological diseases ...
In a recent work published in BME Frontiers, a collaborative study by researchers from Griffith University, Queensland University of Technology, University of Queensland, and Nanjing Stomatological ...
A new 3D human brain tissue platform developed by MIT researchers is the first to integrate all major brain cell types, ...
Researchers at University of Tsukuba have achieved a significant breakthrough by employing scatterometry, a technique ...
A new 3D human brain tissue platform developed by MIT researchers is the first to integrate all major brain cell types, including neurons, glial cells and the vasculature into a single culture.
When machine learning is used to suggest new potential scientific insights or directions, algorithms sometimes offer ...
Laboratory of Neurobiology, Department of Pathology and Experimental Therapy, Institute of Neurosciences, University of Barcelona, Barcelona, Spain ...
Scientists applied high-content imaging and calcium analysis to characterize the success of automated iPSC-derived brain organoid development.
Neurodegenerative diseases like Alzheimer's, Parkinson's, and Huntington's represent an increasing global health burden. Their complex molecular mechanisms ...
Advances in regenerative medicine are transforming how we approach tissue and organ repair, offering patient-specific and functional alternatives to ...