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A Generic Framework for Real-Time Multi-Channel Neuronal Signal Analysis Telemetry Control and Sub-Millisecond Latency Feedback Generation

机译:实时多通道神经元信号分析遥测控制和亚毫秒级延迟反馈生成的通用框架

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摘要

Distinct modules of the neural circuitry interact with each other and (through the motor-sensory loop) with the environment, forming a complex dynamic system. Neuro-prosthetic devices seeking to modulate or restore CNS function need to interact with the information flow at the level of neural modules electrically, bi-directionally and in real-time. A set of freely available generic tools is presented that allow computationally demanding multi-channel short-latency bi-directional interactions to be realized in in vivo and in vitro preparations using standard PC data acquisition and processing hardware and software (Mathworks Matlab and Simulink). A commercially available 60-channel extracellular multi-electrode recording and stimulation set-up connected to an ex vivo developing cortical neuronal culture is used as a model system to validate the method. We demonstrate how complex high-bandwidth (>10 MBit/s) neural recording data can be analyzed in real-time while simultaneously generating specific complex electrical stimulation feedback with deterministically timed responses at sub-millisecond resolution.
机译:神经电路的各个模块彼此交互,并(通过运动传感回路)与环境交互,从而形成一个复杂的动态系统。试图调节或恢复中枢神经系统功能的神经修复设备需要在神经模块的水平上以电气方式,双向和实时方式与信息流进行交互。提出了一组免费提供的通用工具,这些工具允许使用标准PC数据采集和处理硬件和软件(Mathworks Matlab和Simulink)在体内和体外制备中实现对计算要求高的多通道短时延双向交互作用。连接到离体发育中的皮层神经元培养物的市售60通道细胞外多电极记录和刺激设置用作模型系统来验证该方法。我们演示了如何实时分析复杂的高带宽(> 10 MBit / s)神经记录数据,同时以亚毫秒的分辨率同时生成具有确定时间响应的特定复杂电刺激反馈。

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