首页> 外文会议>Engineering in Medicine and Biology Society, 2001. Proceedings of the 23rd Annual International Conference of the IEEE >Nerve growth factor dependent changes in electrophysiology measured in a neurotrophic electrode
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Nerve growth factor dependent changes in electrophysiology measured in a neurotrophic electrode

机译:在神经营养性电极中测得的神经生长因子依赖性的电生理变化

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We describe here a neurotrophic electrode designed to improve long-term reliability and signal-to-noise in a brain-device interface. Our electrode consists of a fine microwire inside a polyimide tube. The polyimide tube is filled with nerve growth factor (NGF) incorporated into a fibrin matrix. Our goal is to have a neurite grow into the tube. The close apposition between neurite and the recording wire should enhance signal-to-noise. The physical connection between device and tissue should improve reliability. We have implanted complete devices in 4 rats. Each rat gets a four-electrode device implanted in the barrel cortex of each hemisphere. Each electrode is filled with a different test substance. One control tube contains only saline, and another contains only the fibrin matrix. The other two electrodes in each array are filled with different concentrations of NGF. Once weekly following the implant, each rat is sedated, and electrical activity in each of the electrodes recorded. Electrodes in 5 of the 8 implants exhibited multi-unit spindling activity. A direct comparison of the amplitude of action potentials over time in each of the types of implants shows that the presence of NGF within the polyimide tube leads to an increase in action potential amplitude.
机译:我们在这里描述了一种神经营养电极,旨在改善大脑设备界面的长期可靠性和信噪比。我们的电极由聚酰亚胺管内的细微丝组成。聚酰亚胺管中充满了掺入纤维蛋白基质的神经生长因子(NGF)。我们的目标是使神经突长入管中。神经突和记录线之间的紧密位置应增强信噪比。设备与组织之间的物理连接应提高可靠性。我们已经在4只大鼠中植入了完整的设备。每只大鼠在其每个半球的桶状皮质中植入一个四电极装置。每个电极填充有不同的测试物质。一个控制管仅包含生理盐水,另一个控制管仅包含血纤蛋白基质。每个阵列中的其他两个电极填充有不同浓度的NGF。植入后每周一次,给每只大鼠镇静,并记录每个电极的电活动。 8种植入物中的5种中的电极表现出多单元纺丝活性。在每种类型的植入物中,随时间变化的动作电位振幅的直接比较表明,聚酰亚胺管中NGF的存在会导致动作电位振幅的增加。

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