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New methods devised specify the size and color of the spots monkeys see when striate cortex (area V1) is electrically stimulated

机译:设计了新的方法来指定猴子在电刺激纹状皮层(区域V1)时看到的斑点的大小和颜色

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Creating a prosthetic device for the blind is a central future task. Our research examines the feasibility of producing a prosthetic device based on electrical stimulation of primary visual cortex (area V1), an area that remains intact for many years after loss of vision attributable to damage to the eyes. As an initial step in this effort, we believe that the research should be carried out in animals, as it has been in the creation of the highly successful cochlear implant. We chose the rhesus monkey, whose visual system is similar to that of man. We trained monkeys on two tasks to assess the size, contrast, and color of the percepts created when single sites in area V1 are stimulated through microelectrodes. Here, we report that electrical stimulation within the central 5° of the visual field representation creates a small spot that is between 9 and 26 min of arc in diameter and has a contrast ranging between 2.6% and 10%. The dot generated by the stimulation in the majority of cases was darker than the background viewed by the animal and was composed of a variety of low-contrast colors. These findings can be used as inputs to models of electrical stimulation in area V1. On the basis of these findings, we derive what kinds of images would be expected when implanted arrays of electrodes are stimulated through a camera attached to the head whose images are converted into electrical stimulation using appropriate algorithms.
机译:为盲人制造假肢设备是未来的中心任务。我们的研究检查了基于初级视觉皮层(区域V1)的电刺激来生产假体装置的可行性,该区域在归因于眼睛损伤的视力丧失后可保持多年不变。作为这项工作的第一步,我们认为研究应该在动物中进行,就像在成功开发人工耳蜗中一样。我们选择了恒河猴,其视觉系统与人的视觉系统相似。我们对猴子进行了两项任务训练,以评估通过微电极刺激V1区域中的单个位点时所产生的感知的大小,对比度和颜色。在这里,我们报告说,视野表示的中心5°内的电刺激会产生一个小点,直径在9至26分钟的弧度之间,对比度在2.6%至10%之间。在大多数情况下,刺激产生的点比动物所观察到的背景要暗,并且由各种低对比度的颜色组成。这些发现可以用作区域V1中电刺激模型的输入。基于这些发现,我们得出当通过连接到头部的摄像头刺激植入的电极阵列时,可以预期得到什么样的图像,使用适当的算法将其图像转换为电刺激。

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