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Design of EOG Signal Acquisition System Using Virtual Instrumentation: A Cost Effective Approach

机译:利用虚拟仪器设计EOG信号采集系统:一种经济有效的方法

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摘要

The design and development of cost effective rehabilitation aids is a challenging task for biomedical research community. The biopotentials such as EEG, EMG, ECG and EOG that are generated from human body help in controlling the external electronic devices. In the recent years, the EOG based assistive devices have gained importance in assisting paralyzed patients, due to their ability to perform operations controlled by retinal movements. This paper proposes a cost effective design and development of EOG signal acquisition system using virtual instrumentation. The hardware design comprises of two instrumentation amplifiers using AD620 for registering horizontal and vertical eye movements and filter circuits. A virtual instrumentation based front panel is designed to interface the hardware and to display the EOG signals. The resultant digitized EOG signal is further enhanced for driving assistive devices. The proposed EOG system makes use of virtual instrumentation and hence minimizes the design cost and increases the flexibility of the instrument. This paper presents the initial part of the research work which is aiming at a cost effective complete assistive device based on extracting the useful information from the eye movements. The qualitative validation of EOG signals recorded ensures the cost effective healthcare delivery for rehabilitation applications.
机译:具有成本效益的康复辅助工具的设计和开发对于生物医学研究界而言是一项艰巨的任务。人体产生的生物电势,例如EEG,EMG,ECG和EOG,有助于控制外部电子设备。近年来,基于EOG的辅助设备由于其执行由视网膜运动控制的操作的能力,在协助瘫痪患者方面已变得越来越重要。本文提出了一种使用虚拟仪器的经济高效的EOG信号采集系统的设计和开发。硬件设计包括两个使用AD620的仪表放大器,用于记录水平和垂直眼动和滤波电路。基于虚拟仪器的前面板旨在与硬件连接并显示EOG信号。所得的数字化EOG信号将进一步增强,以驱动辅助设备。拟议的EOG系统利用虚拟仪器,因此可将设计成本降至最低,并增加仪器的灵活性。本文介绍了研究工作的初始部分,旨在从眼球运动中提取有用的信息,以提供经济高效的完整辅助设备为目标。记录的EOG信号的定性验证可确保为康复应用提供经济有效的医疗保健服务。

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