Mental disorders have high prevalence, but the efficacy of existing therapeutics is limited, in part, because the pathogenic mechanisms remain enigmatic. Current models of neural circuitry include animal models and post-mortem brain tissue, which have allowed enormous progress in understanding the pathophysiology of mental disorders. However, these models limit the ability to assess the functional alterations in short-range and long-range network connectivity between brain regions that are implicated in many mental disorders, e.g., schizophrenia and autism spectrum disorders. This work addresses these limitations by developing an in vitro model of the human brain that models the in vivo cerebral tract environment. In this study, microfabric...
Stem cell studies are being currently widely used in neuroscience particularly for degenerative, dev...
The new cellular models based on neural cells differentiated from induced pluripotent stem cells hav...
Background: Brain organoids are self-organized from human pluripotent stem cells and developed into ...
Neurological disorders are among the leading causes of death worldwide, accounting for almost all on...
Neurological disorders are among the leading causes of death worldwide, accounting for almost all on...
Brain organoids are 3D self-assembled structures composed of hundreds of thousands to millions of ce...
Summary: Cerebral tracts connect separated regions within a brain and serve as fundamental structure...
Neurological disorders affect billions of people across the world, making the discovery of effective...
The cerebral cortex forms early in development according to a series of heritable neurodevelopmental...
The basic technology of stem cells has been developed and created organoids, which have established ...
Human-induced pluripotent stem cells (hiPSCs) with their differentiation protocols, constitute a pot...
Neurological disorders affect billions of people across the world, making the discovery of effective...
The lack of relevant in vitro neural models is an important obstacle on medical progress for neuropa...
The lack of relevant in vitro neural models is an important obstacle on medical progress for neuropa...
Human brain organoid, derived from pluripotent stem cells, is the organotypic multicellular construc...
Stem cell studies are being currently widely used in neuroscience particularly for degenerative, dev...
The new cellular models based on neural cells differentiated from induced pluripotent stem cells hav...
Background: Brain organoids are self-organized from human pluripotent stem cells and developed into ...
Neurological disorders are among the leading causes of death worldwide, accounting for almost all on...
Neurological disorders are among the leading causes of death worldwide, accounting for almost all on...
Brain organoids are 3D self-assembled structures composed of hundreds of thousands to millions of ce...
Summary: Cerebral tracts connect separated regions within a brain and serve as fundamental structure...
Neurological disorders affect billions of people across the world, making the discovery of effective...
The cerebral cortex forms early in development according to a series of heritable neurodevelopmental...
The basic technology of stem cells has been developed and created organoids, which have established ...
Human-induced pluripotent stem cells (hiPSCs) with their differentiation protocols, constitute a pot...
Neurological disorders affect billions of people across the world, making the discovery of effective...
The lack of relevant in vitro neural models is an important obstacle on medical progress for neuropa...
The lack of relevant in vitro neural models is an important obstacle on medical progress for neuropa...
Human brain organoid, derived from pluripotent stem cells, is the organotypic multicellular construc...
Stem cell studies are being currently widely used in neuroscience particularly for degenerative, dev...
The new cellular models based on neural cells differentiated from induced pluripotent stem cells hav...
Background: Brain organoids are self-organized from human pluripotent stem cells and developed into ...