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首页> 外文期刊>Clinical neurophysiology >Miniaturized, on-head, invasive electrode connector integrated EEG data acquisition system.
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Miniaturized, on-head, invasive electrode connector integrated EEG data acquisition system.

机译:小型,头戴式,侵入式电极连接器集成式EEG数据采集系统。

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OBJECTIVE: Intracranial electroencephalogram (EEG) monitoring involves recording multi-contact electrodes. The current systems require separate wires from each recording contact to the data acquisition unit resulting in many connectors and cables. To overcome limitations of such systems such as noise, restrictions in patient mobility and compliance, we developed a miniaturized EEG monitoring system with the amplifiers and multiplexers integrated into the electrode connectors and mounted on the head. METHODS: Small, surface-mounted instrumentation amplifiers, coupled with 8:1 analog multiplexers, were assembled into 8-channel modular units to connect to 16:1 analog multiplexer manifold to create a small (55 cm(3)) head-mounted 128-channel system. A 6-conductor, 30 m long cable was used to transmit the EEG signals from the patient to the remote data acquisition system. RESULTS: Miniaturized EEG amplifiers and analog multiplexers were integrated directly into the electrode connectors. Up to 128-channels of EEG were amplified and analog multiplexed directly on the patient's head. The amplified EEG data were obtained over one long wire. CONCLUSIONS: A miniaturized system of invasive EEG recording has the potential to reduce artefact, simplify trouble-shooting, lower nursing care and increase patient compliance. SIGNIFICANCE: Miniaturization technology improves intracranial EEG monitoring and leads to >128-channel capacity.
机译:目的:颅内脑电图(EEG)监测涉及记录多触点电极。当前系统需要从每个记录触点到数据采集单元的分开的导线,从而导致许多连接器和电缆。为了克服此类系统的局限性,例如噪声,患者活动性和依从性方面的局限性,我们开发了一种微型EEG监测系统,其放大器和多路复用器集成到电极连接器中并安装在头部。方法:将小型,表面安装的仪表放大器与8:1模拟多路复用器耦合,组装成8通道模块化单元,以连接到16:1模拟多路复用器歧管,以创建一个小型(55 cm(3))头戴式128通道系统。使用一根6芯30 m长电缆将EEG信号从患者传输到远程数据采集系统。结果:微型EEG放大器和模拟多路复用器直接集成到电极连接器中。直接在患者头部直接放大和模拟多路复用多达128个通道的EEG。扩增的脑电图数据是通过一根长导线获得的。结论:侵入性脑电图记录的微型系统具有减少伪影,简化故障排除,降低护理和增加患者依从性的潜力。重要性:小型化技术改善了颅内脑电图监测,并导致大于128通道的容量。

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