Scientists train living rat neurons to perform real-time AI computation, marking a breakthrough in bio-hybrid computing systems.
Morning Overview on MSN
Lab-grown rat neurons run real-time machine learning tasks
Researchers at Tohoku University and Future University Hakodate have trained cultured rat cortical neurons to perform real-time machine learning tasks, producing complex temporal patterns including ...
Tom's Hardware on MSN
Researchers train living rat neurons to perform real-time AI computations
Japanese researchers trained cultured rat cortical neurons to autonomously generate complex temporal signals using a real-time machine learning framework.
MIDDLEFIELD— The Middlefield Planning and Zoning Commission is considering an application for a special permit to install a 984-panel, .975 megawatt solar voltaic array in the Rockfall section of town ...
Cell culture heterogeneity is a topic that recently gathered a lot of attention and triggered the development of novel single-cell analysis techniques (Tellez-Gabriel et al., 2016). Current techniques ...
Science Corporation, which offers a brain-computer interface retinal implant aimed at restoring form vision to patients blinded by macular degeneration, has scored $230 million in Series C funding, ...
Carbon is widely regarded as an optimal material for electrochemical detection of neurotransmitters because it combines biocompatibility, high sensitivity to redox-active species, rapid ...
Abstract: A flexible bi-directional bio-interface design using indium zinc oxide (IZO) thin-film transistors (TFTs) to share the same microelectrode array and electrical interconnects is proposed for ...
Axion BioSystems, a leading life sciences tools company focused on cutting-edge live-cell bioelectronic assay and imaging systems, announces the acquisition of the intellectual property and assets of ...
Abstract: fMEA (flexible microelectrode array) is one of the key implantable components for neural stimulating and recording. For its specific implanted environment, it should be designed and ...
ABSTRACT: This study reports a tetrasulfonated nickel phthalocyanine complex (p-NiTSPc) modified carbon fiber microelectrode (CFME) for the detection of 3-methyl-4-nitrophenol (MNP) at low potentials.
Some results have been hidden because they may be inaccessible to you
Show inaccessible results