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A Low-Cost Microcontroller Based Stimulation System to Study Sensory Processing

机译:基于低成本微控制器的刺激系统,用于研究感觉过程

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Understanding the neural correlates of sensory processing such as touch and temperature sensation is important for basic and clinical neuroscience. In addition, to preserve perceptive functions such as touch, which has a critical role in the regulation of the movement, mapping the somatosensory cortex is critical in surgeries involving tumor and epileptogenic zone resection. Novel and low cost hardware solutions are needed that can help clinicians to study natural and pathological levels of behavior and map somatosensory cortex in an objective manner. In this study, a microcontroller-based system was developed which can deliver vibrotactile stimulation to all five fingers of the hand. The system also delivers hot and cold temperature sensation through stacked thermoelectric modules. In order to synchronize the stimulation onset with neural data which can be acquired with a bioamplifier simultaneously, the microcontroller transfers a trigger signal through its digital I/O port or via universal serial bus (USB) with low latency. Our preliminary results demonstrate that our system can be used to study sensory processing with improved temporal precision in an objective fashion.
机译:理解诸如触摸和温度感觉之类的感觉处理的神经相关性对于基础和临床神经科学很重要。此外,为了保留诸如触摸之类的感知功能,这在运动的调节中起关键作用,绘制体感皮层的图谱在涉及肿瘤和癫痫发生区域切除术的手术中也至关重要。需要新颖且低成本的硬件解决方案,这些解决方案可以帮助临床医生客观地研究行为的自然和病理水平并绘制体感皮层图。在这项研究中,开发了一种基于微控制器的系统,该系统可以将振动触觉刺激到手的所有五个手指上。该系统还通过堆叠的热电模块提供冷热温度感应。为了使刺激发作与可以通过生物放大器同时获取的神经数据同步,微控制器通过其数字I / O端口或低延迟的通用串行总线(USB)传输触发信号。我们的初步结果表明,我们的系统可以客观地用于研究具有改善的时间精度的感觉处理。

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