In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nanofluidic systems of the brain can utilize the entire spectrum of organoid technology. Notably, there is an urgent clinical need for a physiologically relevant microfluidic platform that can mimic the brain. Brain diseases affect millions of people worldwide, and this number will grow as the size of elderly population increases, thus making brain disease a serious public health problem. Brain disease modeling typically involves the use of in vivo rodent models, which is time consuming, resource intensive, and arguably unethical because many animals are required for a single study. Moreover, rodent models may not accurately predict human disease...
The complexity of the human brain creates significant, almost insurmountable challenges for neurolog...
Nanofabrication can help us to emulate natural intelligence. Forward-engineering brain gained enormo...
There is an urgent need for predictive in vitro models to improve disease modeling and drug target i...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
Neurological disorders are the leading cause of disability and the second largest cause of death wor...
To highlight the particular needs with respect to modeling the unique and complex organization of th...
To highlight the particular needs with respect to modeling the unique and complex organization of th...
The complexity of the human brain creates significant, almost insurmountable challenges for neurolog...
Nanofabrication can help us to emulate natural intelligence. Forward-engineering brain gained enormo...
There is an urgent need for predictive in vitro models to improve disease modeling and drug target i...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
In this article, we review brain-on-a-chip models and associated underlying technologies. Micro-nano...
Neurological disorders are the leading cause of disability and the second largest cause of death wor...
To highlight the particular needs with respect to modeling the unique and complex organization of th...
To highlight the particular needs with respect to modeling the unique and complex organization of th...
The complexity of the human brain creates significant, almost insurmountable challenges for neurolog...
Nanofabrication can help us to emulate natural intelligence. Forward-engineering brain gained enormo...
There is an urgent need for predictive in vitro models to improve disease modeling and drug target i...