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Neural Organoids

All articles tagged with #neural organoids

Shape-matched porous microlattices enable full-surface, high-density electrophysiology in neural organoids
technology6 months ago

Shape-matched porous microlattices enable full-surface, high-density electrophysiology in neural organoids

Researchers report a shape-conformal, porous 3D microlattice that self-assembles around neural organoids to provide nearly full surface coverage with dense, low-impedance microelectrodes (up to 240 channels across 91% of a spherical organoid). The inverse-design buckling approach creates tunable 3D geometries that support high-resolution electrophysiology, stimulation, and simultaneous imaging, while preserving diffusion through the porous scaffold. Demonstrated with human cortical and spinal organoids, the system enables 3D spatial mapping of activity, longitudinal monitoring, pharmacology tests, optogenetic modulation, and disease-phenotype modeling, with versatility in shapes (spherical, hexagonal prisms, cubes) and growth-in-place integration for enhanced organoid interfacing and assembloid engineering.

"Interconnecting Lab-Grown Neural Networks for Insight into Brain Function"
neuroscience2 years ago

"Interconnecting Lab-Grown Neural Networks for Insight into Brain Function"

Researchers have successfully connected lab-grown brain tissues, known as neural organoids, using axonal bundles to mimic the complex networks found in the human brain. This breakthrough allows for the study of interregional brain connections and their role in human cognitive functions, demonstrating more sophisticated activity patterns and offering new avenues for researching neurological and psychiatric disorders. The method enhances our understanding of brain network development and plasticity, providing a powerful tool for studying human brain networks and their implications in health and disease.