Human Brain May Have Two Distinct Origins, Stanford Study Reveals
6 Articles
6 Articles
Stanford University scientists have discovered that the human brain, contrary to previous belief, is not composed of a single group of cells, but rather of two different stem cells that merged during the evolutionary process. The research, published in the journal Nature Neuroscience, could revolutionize the treatment of deadly diseases such as SMA and ALS.
A new study led by Stanford University has revealed that the human brain did not develop from a single, common group of progenitor cells, as previously thought. Scientists determined that the forebrain, midbrain, and hindbrain originate from two separate cellular sources from very early stages of embryonic development. The findings are said to open new avenues in the research of diseases such as ALS and spinal muscular atrophy. 🚆
Researchers from Stanford University have uncovered a long-unexplained detail about the development of the human brain. The findings suggest that the front and back hemispheres of the brain develop from distinct groups of cells in the early stages of embryonic development.
Stanford's discovery allowed the cultivation of neurons from a region of the brain linked to vital functions and could help study diseases such as ALS.
The study, published in Nature Neuroscience, challenges the current understanding that all brain regions have a common developmental starting point.
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