Neurons-on-a-Chip for Drug Development & Neurotoxicity

Por um escritor misterioso
Last updated 22 dezembro 2024
Neurons-on-a-Chip for Drug Development & Neurotoxicity
High throughput microfluidic devices to accelerate drug development in neuroscience.
Neurons-on-a-Chip for Drug Development & Neurotoxicity
Comparative microelectrode array data of the functional development of hPSC-derived and rat neuronal networks
Neurons-on-a-Chip for Drug Development & Neurotoxicity
Frontiers Advances in current in vitro models on neurodegenerative diseases
Neurons-on-a-Chip for Drug Development & Neurotoxicity
Neurons-on-a-Chip for Drug Development & Neurotoxicity
Neurons-on-a-Chip for Drug Development & Neurotoxicity
Advances in 3D neuronal microphysiological systems: towards a functional nervous system on a chip
Neurons-on-a-Chip for Drug Development & Neurotoxicity
Micromachines, Free Full-Text
Neurons-on-a-Chip for Drug Development & Neurotoxicity
Micromachines, Free Full-Text
Neurons-on-a-Chip for Drug Development & Neurotoxicity
Drug discovery and development: Biomarkers of neurotoxicity and neurodegeneration - Abigail L Walker, Syed Z Imam, Ruth A Roberts, 2018
Neurons-on-a-Chip for Drug Development & Neurotoxicity
Frontiers Three-Dimensional in vitro Models of Healthy and Tumor Brain Microvasculature for Drug and Toxicity Screening
Neurons-on-a-Chip for Drug Development & Neurotoxicity
Functional imaging of neuron–astrocyte interactions in a compartmentalized microfluidic device
Neurons-on-a-Chip for Drug Development & Neurotoxicity
If I Only Had a Brain? Tissue Chips Predict Neurotoxicity – NIH Director's Blog
Neurons-on-a-Chip for Drug Development & Neurotoxicity
Frontiers The Future of 3D Brain Cultures in Developmental Neurotoxicity Testing
Neurons-on-a-Chip for Drug Development & Neurotoxicity
High-resolution bioelectrical imaging of Aβ-induced network dysfunction on CMOS-MEAs for neurotoxicity and rescue studies
Neurons-on-a-Chip for Drug Development & Neurotoxicity
Functional characterization of human pluripotent stem cell-derived cortical networks differentiated on laminin-521 substrate: comparison to rat cortical cultures

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