bioRxiv · 10.64898/2025.11.28.691240
Living Neurosheets: Engineering readily deployable neural architectures
Abstract
Inspired by the ability of brain structures to support cognitive processing, the need for reliable queryable neural models, and emerging biohybrid applications, we present Living Neurosheets: practical, malleable, modular, and scalable systems for realizing living neural architectures, bio-inspired or beyond evolutionary precedent. By innervating porous sheets, paper-like substrates are endowed with neural function while retaining exceptional versatility. Pre-programmed porosity anchors deposited neurons for reliable spatial control. Cutting, folding, and stacking allow intuitive design, modular composition, and batch fabrication (by the hundreds) of complex neural motifs that preserve geometry and function for months. Reversible integration with tissue-matched optoelectronics enables both sample reuse across hardware and hardware multiplexing across samples, for high-throughput, multimodal investigations. We illustrate these aspects across tissue topologies, gyri-inspired manifolds, and laminar cortical mimics, attaining control over entrainment, synchronization, propagation, suppression, and augmentation dynamics--key features of in vivo neural activity. Finally, via cross-instrument portability, we fuse spatial transcriptomics and electrophysiology, linking gene programs to emergent dynamics.
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Upadhyay, G., Kazemi, K., Kim, S. H., Zhang, X., Yuan, H., Dou, Z., Kang, S., Saif, M. T. A., Kong, H., Beggs, J., Gritton, H., Gazzola, M.. 2025-12-02. Living Neurosheets: Engineering readily deployable neural architectures. https://doi.org/10.64898/2025.11.28.691240
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