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Electro-optical Neural Platform Integrated with Nanoplasmonic Inhibition Interface

机译:集成了纳米等离子体抑制接口的电光神经平台

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摘要

Engineering of neural interfaces with rianomaterials for remote manipulation facilitates the development of platforms for the study and treatment of brain disorders, yet extending their capability to inhibiting the electrical activities of unmodified neurons has been difficult. Here we report the development of an electro-optical neural platform integrated with gold nanorods for simultaneous electrical excitation and readout, and photothermal inhibition of neural activities. A monolayer of gold nanorods was placed at the electrode neuron interfaces of a microelectrode array for photothermal stimulation of neural activities. This nanoplasmonic interface interacted well with neurons and metal electrodes without affecting the biological and electrical properties. We demonstrated that spontaneous firing of neurons and their signal propagation along the neurites evoked by electrical stimulation were optically inhibited on this neural platform. We believe that our platform could be an alternative to the optogenetic approach and may ultimately be applied to prosthetic devices based on optical neuromodulation.
机译:用rianomaterials对神经接口进行工程改造以进行远程操纵有助于研究和治疗脑部疾病的平台的发展,但是很难扩展其抑制未修饰神经元电活动的能力。在这里,我们报告了与金纳米棒集成的电光神经平台的开发,该平台可同时进行电激发和读出以及光热抑制神经活动。将金纳米棒的单层置于微电极阵列的电极神经元界面处,以光热刺激神经活动。这种纳米等离子体界面与神经元和金属电极相互作用良好,而不会影响生物学和电学性质。我们证明了在该神经平台上光学抑制了神经元的自发放电及其沿电刺激诱发的神经突的信号传播。我们认为,我们的平台可以替代光遗传学方法,并且最终可以应用于基于光学神经调制的假体设备。

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