首页> 美国卫生研究院文献>The Journal of Physiology >Phosphenes produced by electrical stimulation of human occipital cortex and their application to the development of a prosthesis for the blind
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Phosphenes produced by electrical stimulation of human occipital cortex and their application to the development of a prosthesis for the blind

机译:电刺激人枕皮质的磷素及其在盲人假体开发中的应用

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摘要

1. To explore the feasibility of a visual prosthesis for the blind, human visual cortex has been stimulated during a series of surgical procedures on conscious volunteers undergoing other occipital lobe surgery.2. Area no. 17 seems the most effective locus for such stimulation, at least in sighted or recently hemianopic patients.3. Changes in electrode size and configuration, or in stimulus parameters, have little effect on subjective sensation.4. Thresholds do vary depending on parameters, but not electrode size, and these effects have been studied.5. Painful effects are associated with stimulation of the dura, but not of the calcarine artery and associated vessels.6. Stimulation of a single electrode usually produces one phosphene, whose size ranges from tiny punctate sensations like `a star in the sky' up to a large coin at arm's length. Very large elongated phosphenes, like those seen by Brindley's second patient, have not been reported despite the number of patients, electrodes, and combinations of stimulus parameters tested. These large phosphenes may be an effect of prolonged blindness.7. Stimulation substantially above threshold may produce a second conjugate phosphene, inverted about the horizontal meridian.8. Stimulation of a single electrode may also produce multiple phosphenes with no differential threshold.9. Chromatic effects and/or phosphene flicker may, or may not occur. This can vary from point to point on the same patient.10. Phosphenes fade after 10-15 sec of continuous stimulation.11. All phosphenes move proportionately with voluntary eye movements, within the accuracy of our mapping techniques.12. Brightness modulation can easily be achieved by changing pulse amplitude.13. The position of phosphenes in the visual field corresponds only roughly with expectations based on classical maps showing the projection of the visual field onto the cortex.14. Patients can usually discriminate phosphenes produced by 1 mm2 electrodes on 3 mm centres, although this seems to be close to the limit of resolution.15. Patterns of up to four phosphenes produced by four electrodes have been recognized. However, a variety of complex interactions have been reported.16. Multiple phosphenes are co-planar, although patients are unable to estimate their distance. id="idm139785062197936">17. Phosphenes appear immediately when stimulation is begun, and disappear immediately upon cessation of stimulation. id="idm139785055590016" class="p">18. Future work must concentrate on blind volunteers to explore possible differences in subjective sensation produced after prolonged blindness, and to explore more complex pattern presentation which requires substantial periods of time with any given patient.
机译:1.为探讨盲人视觉假体的可行性,在接受其他枕叶手术的清醒志愿者的一系列外科手术中,刺激了人类的视觉皮层。区号至少在有视力或近视的患者中,17似乎是最有效的刺激源。3。电极尺寸和结构或刺激参数的变化对主观感觉影响很小。4。阈值确实随参数而变化,但与电极大小无关,并且已经研究了这些影响。5。疼痛的影响与硬脑膜的刺激有关,但与钙化动脉和相关血管无关。6。单个电极的刺激通常会产生一种磷化氢,其大小范围从微小的点状感觉(如“天空中的星星”)到臂长的大硬币。尽管有很多患者,电极和测试的刺激参数组合,但尚未报道过像布林德利第二位患者所见的那样大的细长磷烯。这些大的phosph可能是长期失明的结果。7。基本上高于阈值的刺激可能会产生第二共轭磷烯,其绕水平子午线反转8。单个电极的刺激也可能会产生多个无差别阈值的9。可能会或可能不会出现色效应和/或闪烁。同一位患者的不同点之间可能会有所不同10。连续刺激10-15秒后,荧光素会褪色11。在我们的测绘技术的准确性范围内,所有都与自愿的眼睛运动成比例地移动。12。通过改变脉冲幅度可以很容易地实现亮度调制13。磷光体在视场中的位置仅与基于经典图的预期大致对应,该经典图显示了视场在皮质上的投影14。患者通常可以辨别中心位置为3 mm的1 mm 2 电极产生的seems,尽管这似乎已接近分辨率极限[15]。已经认识到由四个电极产生的多达四个的图案。但是,已经报道了各种复杂的相互作用。16。多个是共面的,尽管患者无法估计其距离。 id =“ idm139785062197936”> 17。刺激开始后,磷立即出现,刺激停止后,磷立即消失。 id =“ idm139785055590016” class =“ p”> 18。未来的工作必须集中在盲人志愿者上,以探究长时间失明后可能产生的主观感觉上的差异,并探索更复杂的模式表现,这需要花费大量时间与任何给定患者进行交流。

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