Download the Poster: "A Refined Microelectrode Arrays System for Long-Term Electrophysiological Recordings in Brain and Retinal Organoids"
This downloadable scientific poster highlights breakthrough data showing that conventional planar MEAs can distort organoid morphology and lose activity over time, while the Mesh MEA’s integrated scaffold preserves structure, synapses, and functional network activity across weeks of culture.
Discover how Mesh MEA enables truly long-term, 3D electrophysiological recordings in organoids. This downloadable scientific poster highlights breakthrough data showing that conventional planar MEAs can distort organoid morphology and lose activity over time, while the Mesh MEA’s integrated scaffold preserves structure, synapses, and functional network activity across weeks of culture.
Inside, you’ll find side-by-side microscopy, connectivity maps, and electrophysiology comparisons, including studies in cerebral organoids, retinal organoids, and disease models. The results demonstrate how embedded electrodes allow researchers to capture deeper, more stable signals from within intact organoids, offering a more faithful window into development, disease progression, and therapeutic responses.
Whether you’re exploring next-generation organoid platforms or improving long-term electrophysiology workflows, this poster provides valuable insights into a novel technology shaping the future of 3D neurophysiology.
Download the poster now to see the full dataset. To learn more about whether Mesh MEA is right for your lab, contact Multi Channel Systems or schedule a call with our PhD experts.