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首页> 外文期刊>Journal of clinical neuroscience: official journal of the Neurosurgical Society of Australasia >Development of an extraocular retinal prosthesis: Evaluation of stimulation parameters in the cat.
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Development of an extraocular retinal prosthesis: Evaluation of stimulation parameters in the cat.

机译:眼外视网膜假体的开发:猫的刺激参数评估。

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摘要

Electrical stimulation of the retina with extraocular electrodes is a new approach to developing a retinal prosthesis for blind patients. We have evaluated stimulus and electrode configurations for an extraocular retinal prosthesis (ERP). In anesthetized cats, ERP disc electrodes of 1 mm, 2 mm and 3 mm diameter were sutured to the sclera over the lateral globe. Electrically evoked potentials (EEPs) were recorded over the ipsilateral visual cortex, which resulted from the retinal stimulation of the ERP electrodes with a return electrode placed at the medial canthus. Square pulses, triangular pulses and the effects of dark adaptation and electrode size on the amplitude and thresholds for a cortical response were investigated. Square pulses were more effective than triangular pulses for stimulating the retina. Dark adaptation leads to a large increase in the threshold for retinal stimulation. There was no difference in the threshold for stimulation between electrodes of 1 mm and 3 mm diameter. Stimulationof the retina with extraocular electrodes elicits an EEP that is similar to that generated by retinal stimulation with intraocular electrodes. The use of square pulses is preferred to triangular pulses to minimize the peak current density at the electrode-tissue interface. As there is little difference in the threshold current for retinal stimulation with 1 mm or 3 mm electrodes, 3 mm electrodes are preferred as this will decrease the charge density at the active surface of the electrode.
机译:用眼外电极电刺激视网膜是为盲人患者开发视网膜假体的新方法。我们已经评估了眼外视网膜假体(ERP)的刺激和电极配置。在麻醉的猫中,将直径分别为1 mm,2 mm和3 mm的ERP圆盘电极缝合到外侧球体的巩膜上。在同侧视觉皮层上记录了电诱发电位(EEP),这是由于视网膜电极刺激了ERP电极,并在内侧can部放置了返回电极。研究了方波脉冲,三角波脉冲以及暗适应和电极尺寸对皮层反应幅度和阈值的影响。在刺激视网膜方面,方形脉冲比三角形脉冲更有效。黑暗适应导致视网膜刺激的阈值大大增加。直径为1 mm和3 mm的电极之间的刺激阈值没有差异。用眼外电极刺激视网膜引起的EEP与通过眼内电极视网膜刺激产生的EEP相似。使用方形脉冲比使用三角形脉冲更可取,以最大程度地减小电极-组织界面处的峰值电流密度。由于使用1毫米或3毫米电极进行视网膜刺激的阈值电流几乎没有差异,因此首选3毫米电极,因为这会降低电极活性表面的电荷密度。

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