...
首页> 外文期刊>Journal of medical systems >BRAINsens: Body-Worn Reconfigurable Architecture of Integrated Network Sensors
【24h】

BRAINsens: Body-Worn Reconfigurable Architecture of Integrated Network Sensors

机译:BRINSENS:集成网络传感器的身体磨损可重新配置架构

获取原文
获取原文并翻译 | 示例
           

摘要

Body sensor network (BSN) is a promising human-centric technology to monitor neurophysiological data. We propose a fully-reconfigurable architecture that addresses the major challenges of a heterogenous BSN, such as scalabiliy, modularity and flexibility in deployment. Existing BSNs especially with Electroencephalogarm (EEG) have these limitations mainly due to the use of driven-right-leg (DRL) circuit. We address these limitations by custom-designing DRL-less EEG smart sensing nodes (SSN) for modular and spatially distributed systems. Each single-channel EEG SSN with a input-referred noise of 0.82 V-rms and CMRR of 70dB (at 60Hz), samples brain signals at 512 sps. SSNs in the network can be configured at the time of deployment and can process information locally to significantly reduce data payload of the network. A Control Command Node (CCN) initializes, synchronizes, periodically scans for the available SSNs in the network, aggregates their data and sends it wirelessly to a paired device at a baud rate of 115.2kbps. At the given settings of the (IC)-C-2 bus speed of 100kbps, CCN can configure up to 39 EEG SSNs in a lego-like platform. The temporal and frequency-domain performance of the designed DRL-less EEG SSNs is evaluated against a research-grade Neuroscan and consumer-grade Emotiv EPOC EEG. The results show that the proposed network system with wearable EEG can be deployed in situ for continuous brain signal recording in real-life scenarios. The proposed system can also seamlessly incorporate other physiological SSNs for ECG, HRV, temperature etc. along with EEG within the same topology.
机译:身体传感器网络(BSN)是一个有前途的人类技术,用于监测神经生理数据。我们提出了一种完全可重构的架构,解决了异教徒,如萨尔比利,模块化和部署灵活性的主要挑战。尤其具有闪光灯臂(EEG)的现有BSN主要是由于使用从动右腿(DRL)电路的局限性。我们通过定制设计DRL的EEG智能感测节点(SSN)来解决这些限制,用于模块化和空间分布式系统。每个单通道EEG SSN具有0.82V-RMS和70dB(在60Hz)的CMRR的输入引用噪声,在512个SPS时样本脑信号。网络中的SSN可以在部署时配置,并且可以在本地处理信息以显着降低网络的数据有效载荷。控制命令节点(CCN)初始化,同步,周期性地扫描网络中的可用SSN,聚合它们的数据并以115.2kbps的波特率无线地发送到配对设备。在给定的(IC)-C-2总线速度为100kbps的设置时,CCN可以在Lego的平台中配置高达39个EEG SSN。针对研究级神经综合和消费级EMOTIV EPOC EEG评估设计的DRL-DLOSE EEG SSN的时间和频域性能。结果表明,具有可穿戴EEG的建议网络系统可以原位部署用于现实方案中的连续脑信号录制。该系统还可以与ECG,HRV,温度等无缝地将其他生理学SSN与同一拓扑内的EEG一起结合。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号