Human brain organoids represent a powerful tool for the study of human neurological diseases particularly those that impact brain growth and structure. However, many neurological diseases lack obvious anatomical abnormalities, yet significantly impact neural network functions, raising the question of whether organoids possess sufficient neural network architecture and complexity to model these conditions. Here, we explore the network level functions of brain organoids using calcium sensor imaging and extracellular recording approaches that together reveal the existence of complex oscillatory network behaviors reminiscent of intact brain preparations. We further demonstrate strikingly abnormal epileptiform network activity in organoids deriv...
Impaired neuronal network function is a hallmark of neurodevelopmental and neurodegenerative disorde...
Human cortical organoids, three-dimensional neuronal cultures, are emerging as powerful tools to stu...
Cerebral (or brain) organoids derived from human cells have enormous potential as physiologically re...
Brain organoids represent a powerful tool for studying human neurological diseases, particularly tho...
Engineering brain organoids from human induced pluripotent stem cells (hiPSCs) is a powerful tool fo...
Human brain organoids replicate much of the cellular diversity and developmental anatomy of the huma...
Human brain organoids replicate much of the cellular diversity and developmental anatomy of the huma...
Human brain organoids replicate much of the cellular diversity and developmental anatomy of the huma...
Brain organoids are 3D self-assembled structures composed of hundreds of thousands to millions of ce...
Brain organoids closely recapitulate many features and characteristics of in vivo brain tissue. This...
Cerebral organoids are an emerging cutting-edge technology to model human brain development and neur...
Human cerebral organoids are unique in their development of progenitor-rich zones akin to ventricula...
© 2017 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. In vitro models o...
Multiple protocols have been devised to generate cerebral organoids that recapitulate features of th...
In the last decade, organoid technology has filled the gap generated by the poor accessibility and u...
Impaired neuronal network function is a hallmark of neurodevelopmental and neurodegenerative disorde...
Human cortical organoids, three-dimensional neuronal cultures, are emerging as powerful tools to stu...
Cerebral (or brain) organoids derived from human cells have enormous potential as physiologically re...
Brain organoids represent a powerful tool for studying human neurological diseases, particularly tho...
Engineering brain organoids from human induced pluripotent stem cells (hiPSCs) is a powerful tool fo...
Human brain organoids replicate much of the cellular diversity and developmental anatomy of the huma...
Human brain organoids replicate much of the cellular diversity and developmental anatomy of the huma...
Human brain organoids replicate much of the cellular diversity and developmental anatomy of the huma...
Brain organoids are 3D self-assembled structures composed of hundreds of thousands to millions of ce...
Brain organoids closely recapitulate many features and characteristics of in vivo brain tissue. This...
Cerebral organoids are an emerging cutting-edge technology to model human brain development and neur...
Human cerebral organoids are unique in their development of progenitor-rich zones akin to ventricula...
© 2017 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. In vitro models o...
Multiple protocols have been devised to generate cerebral organoids that recapitulate features of th...
In the last decade, organoid technology has filled the gap generated by the poor accessibility and u...
Impaired neuronal network function is a hallmark of neurodevelopmental and neurodegenerative disorde...
Human cortical organoids, three-dimensional neuronal cultures, are emerging as powerful tools to stu...
Cerebral (or brain) organoids derived from human cells have enormous potential as physiologically re...