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Safe Direct Current Stimulation to Expand Capabilities of Neural Prostheses

机译:安全的直流电刺激可扩展神经假体的功能

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摘要

While effective in treating some neurological disorders, neuroelectric prostheses are fundamentally limited because they must employ charge-balanced stimuli to avoid evolution of irreversible electrochemical reactions and their byproducts at the interface between metal electrodes and body fluids. Charge-balancing is typically achieved by using brief biphasic alternating current (AC) pulses, which typically excite nearby neural tissues but cannot efficiently inhibit them. In contrast, direct current (DC) applied via a metal electrode in contact with body fluids can excite, inhibit and modulate sensitivity of neurons; however, chronic DC stimulation is incompatible with biology because it violates charge injection limits that have long been considered unavoidable. In this paper, we describe the design and fabrication of a Safe DC Stimulator (SDCS) that overcomes this constraint. The SCDS drives DC ionic current into target tissue via salt-bridge micropipette electrodes by switching valves in phase with AC square waves applied to metal electrodes contained within the device. This approach achieves DC ionic flow through tissue while still adhering to charge-balancing constraints at each electrode–saline interface. We show the SDCS's ability to both inhibit and excite neural activity to achieve improved dynamic range during prosthetic stimulation of the vestibular part of the inner ear in chinchillas.
机译:虽然可以有效地治疗某些神经系统疾病,但神经电假体从根本上受到限制,因为它们必须采用电荷平衡的刺激来避免不可逆的电化学反应及其副产物在金属电极与体液之间的界面处发展。电荷平衡通常是通过使用短暂的双相交流(AC)脉冲来实现的,该脉冲通常会激发附近的神经组织,但不能有效地抑制它们。相反,通过与体液接触的金属电极施加的直流电(DC)可以激发,抑制和调节神经元的敏感性。但是,慢性DC刺激与生物学不兼容,因为它违反了长期以来被认为不可避免的电荷注入限制。在本文中,我们描述了克服这一限制的安全直流激励器(SDCS)的设计和制造。 SCDS通过将阀与施加到设备中包含的金属电极的AC方波同相切换阀,从而通过盐桥微量移液器电极将DC离子电流驱动到目标组织中。这种方法实现了通过组织的DC离子流,同时仍然遵守每个电极-盐水界面的电荷平衡约束。我们展示了SDCS抑制和激发神经活动的能力,以在对龙猫的内耳前庭部分进行假体刺激期间实现改善的动态范围。

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