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Ambulatory EEG NeuroMonitor platform for engagement studies of children with development delays

机译:动态EEG NeuroMonitor动态平台,用于发育迟缓儿童的参与研究

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Engagement monitoring is crucial in many clinical and therapy applications such as early learning preschool classes for children with developmental delays including autism spectrum disorder (ASD), attention-deficit hyperactivity disorder (ADHD), or cerebral palsy; as it is challenging for the instructors to evaluate the individual responses of these children to determine the effectiveness of the teaching strategies due to the diverse and unique need of each child who might have difficulty in verbal or behavioral communication. This paper presents an ambulatory scalp electroencephalogram (EEG) NeuroMonitor platform to study brain engagement activities in natural settings. The developed platform is miniature (size: 2.2" × 0.8" × 0.36", weight: 41.8 gm with 800 mAh Li-ion battery and 3 snap leads) and low-power (active mode: 32 mA low power mode: under 5mA) with 2 channels (Fpl, Fp2) to record prefrontal cortex activities of the subject in natural settings while concealed within a headband. The signals from the electrodes are amplified with a low-power instrumentation amplifier; notch filtered (ƒ_c = 60Hz), then band-passed by a 2~(nd)-order Chebyshev-I low-pass filter cascaded with a 2~(nd) -order low-pass (ƒ_c = 125Hz). A PSoC ADC (16-bit, 256 sps) samples this filtered signal, and can either transmit it through a Class-2 Bluetooth transceiver to a remote station for real-time analysis or store it in a microSD card for offline processing. This platform is currently being evaluated to capture data in the classroom settings for engagement monitoring of children, aimed to study the effectiveness of various teaching strategies that will allow the development of personalized classroom curriculum for children with developmental delays.
机译:参与监测在许多临床和治疗应用中至关重要,例如针对发育迟缓儿童(包括自闭症谱系障碍(ASD),注意力缺陷多动障碍(ADHD)或脑瘫)的学前班。由于每个孩子的口头或行为交流都可能有困难,因此他们需要评估这些孩子的个人反应来确定教学策略的有效性,这对他们是具有挑战性的。本文介绍了动态头皮脑电图(EEG)NeuroMonitor平台,以研究自然环境中的大脑参与活动。开发的平台是微型的(尺寸:2.2英寸×0.8英寸×0.36英寸,重量:41.8 gm,带800 mAh锂离子电池和3个卡扣引线)和低功耗(活动模式:32 mA低功耗模式:5mA以下)具有2个通道(Fpl,Fp2),可以在自然环境下记录对象的前额叶皮层活动,同时隐藏在头带中,并通过低功率仪表放大器放大来自电极的信号;对陷波进行滤波(ƒ_c= 60Hz),然后进行频带由2阶Chebyshev-I低通滤波器和2阶低通(ƒ_c= 125Hz)级联的PSoC ADC(16位,256 sps)采样信号经过滤波后,可以通过2级蓝牙收发器传输到远程站进行实时分析,也可以将其存储在microSD卡中以进行离线处理,目前正在评估该平台以捕获教室设置中的数据以进行互动监测儿童,旨在研究各种有助于发展的教学策略的有效性•针对发育迟缓儿童的个性化课堂课程。

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