Electrophysiology read-out tools for brain-on-chip biotechnology

C Forro, D Caron, GN Angotzi, V Gallo, L Berdondini… - Micromachines, 2021 - mdpi.com
Brain-on-Chip (BoC) biotechnology is emerging as a promising tool for biomedical and
pharmaceutical research applied to the neurosciences. At the convergence between lab-on …

Emerging Penetrating Neural Electrodes: In Pursuit of Large Scale and Longevity

L Luan, R Yin, H Zhu, C Xie - Annual review of biomedical …, 2023 - annualreviews.org
Penetrating neural electrodes provide a powerful approach to decipher brain circuitry by
allowing for time-resolved electrical detections of individual action potentials. This unique …

A multifunctional hybrid graphene and microfluidic platform to interface topological neuron networks

V Dupuit, O Terral, G Bres, A Claudel… - Advanced Functional …, 2022 - Wiley Online Library
The nervous system is as complex as difficult to probe. Innovative tools reducing the network
complexity and being able to interrogate neurons are crucial to better understand its function …

A probabilistic framework for task-aligned intra-and inter-area neural manifold estimation

E Balzani, JP Noel, P Herrero-Vidal… - arXiv preprint arXiv …, 2022 - arxiv.org
Latent manifolds provide a compact characterization of neural population activity and of
shared co-variability across brain areas. Nonetheless, existing statistical tools for extracting …

Compression strategies for large-scale electrophysiology data

AP Buccino, O Winter, D Bryant, D Feng… - Journal of Neural …, 2023 - iopscience.iop.org
Objective. With the rapid adoption of high-density electrode arrays for recording neural
activity, electrophysiology data volumes within labs and across the field are growing at …

Design, fabrication, and implantation of invasive microelectrode arrays as in vivo brain machine interfaces: A comprehensive review

D Yi, Y Yao, Y Wang, L Chen - Journal of Manufacturing Processes, 2024 - Elsevier
Abstract Invasive Microelectrode Arrays (MEAs) have been a significant and useful tool for
us to gain a fundamental understanding of how the brain works through high spatiotemporal …

Recent developments and future perspectives on neuroelectronic devices

P Rinklin, B Wolfrum - Neuroforum, 2021 - degruyter.com
Neuroscientific discoveries and the development of recording and stimulation tools are
deeply connected. Over the past decades, the progress in seamlessly integrating such tools …

[HTML][HTML] Novel transducers for high-channel-count neuroelectronic recording interfaces

A Guimerà-Brunet, E Masvidal-Codina… - Current opinion in …, 2021 - Elsevier
Neuroelectronic interfaces with the nervous system are an essential technology in state-of-
the-art neuroscience research aiming to uncover the fundamental working mechanisms of …

Low-Power FPGA-based Spiking Neural Networks for Real-Time Decoding of Intracortical Neural Activity

L Martis, G Leone, L Raffo, P Meloni - IEEE Sensors Journal, 2024 - ieeexplore.ieee.org
Brain-machine interfaces (BMIs) are systems designed to decode neural signals and
translate them into commands for external devices. Intracortical microelectrode arrays …

Bioelectrodes for high-channel count and small form factor CMOS neural probes

JF Ribeiro, F Boi, A Lecomte… - 2021 10th …, 2021 - ieeexplore.ieee.org
SiNAPS neural probes enable continuous sub-millisecond neural activity recordings from all
integrated electrodes (up to 1024) with a very small form factor implantable device. Key for …