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April 4, 2023
Just as teams of elite athletes train alongside staffs of coaches, ensembles of neurons in the brain’s motor cortex depend on nearby astrocytes to help them learn to encode when and how to move, and the optimal timing and trajectory of a motion, a new MIT study shows.
March 11, 2023
Get latest articles and stories on Health at LatestLY. Throughout our lifetimes, we have acquired the ability to do a variety of skilled movements, from driving a car to swinging a tennis racket. You might believe that only neurons carry out this learning, but a recent study by scientists at The Picower Center for Learning and Memory at MIT demonstrates the crucial function of another type of brain cell: astrocytes. Health News | Astrocyte Cells Critical for Learning Skilled Movements: Research...
August 3, 2022
Using organoids to model early development, researchers used an emerging microscopy technology to see that new neurons struggled to reach their developmental destination in Rett syndrome lab models.
August 1, 2022
With organoids to model initial development, scientists employed a developing microscopy technology to observe that new neurons struggled to attain their developmental goal.
July 30, 2022
Using an innovative microscopy method, scientists at The Picower Institute for Learning and Memory at MIT observed how newborn neurons struggle to reach their proper places in advanced human brain tissue models of Rett syndrome, producing new insight into how developmental deficits observed in the brains of patients with the devastating disorder may emerge.
May 17, 2021
Indian, US scientists grow human brain tissues in a 3D printed apparatus - This palm-sized platform is said to have successfully demonstrated simultaneous growth and real-time imaging of human brain cells, in the long term.
May 17, 2021
In order to uninterruptedly observe brain tissues as they grow and develop, scientists from Indian and American Institutes claim to have developed a novel solution in Cell Culture.
April 6, 2021
Scientists developed a new 3D-printed microfluidic bioreactor to observe organoids as they grow. Photo by Ikram Khan April 6 (UPI) -- Scientists have developed a new 3D-printed bioreactor, allowing researchers to observe tiny brains and other organoids as they grow. The novel bioreactor -- featured in a new paper, published Tuesday in the journal Biomicrofluidics -- could help medical researchers develop new disease therapies and test experimental drugs. Advertisement Over the last decades, sci...
April 6, 2021
Credit: Ikram Khan WASHINGTON, April 6, 2021 -- Scientists from MIT and the Indian Institute of Technology Madras have grown small amounts of self-organizing brain tissue, known as organoids, in a tiny 3D-printed system that allows observation while they grow and develop. The work is reported in Biomicrofluidics, by AIP Publishing. Current technology for real-time observation of growing organoids involves the use of commercial culture dishes with many wells in a glass-bottomed plate placed und...