The Ferrier lecture, 1989. Outlooks for blindsight: explicit methodologies for implicit processes.

L Weiskrantz
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引用次数: 135

Abstract

In primates the retina is connected with different targets in the brain via several parallel pathways, the largest of which is that going to the lateral geniculate nucleus of the thalamus and thence to the striate cortex, the geniculo-striate pathway. When this route is damaged in man, apparent blindness in a corresponding part of the visual field occurs, despite the integrity of the other parallel pathways. In animals, it has been demonstrated by conventional behavioural forced-choice techniques that extrastriate routes can sustain a variety of visual discriminations. Comparable discriminations are also possible in some human subjects with geniculo-striate damage when forced-choice 'guessing' techniques are used. 'Blind-sight' refers to those subjects who state that they are unaware of the visual stimuli, even when performing discriminations at high levels of proficiency. Extensions of this approach are reviewed, especially to spectral sensitivity and movement discrimination. But residual capacities can also be assessed without requiring guessing responses, thereby avoiding issues of differential response criteria and other practical difficulties. Effects of 'unseen' stimuli in the cortically blind field on the visible perception of concurrent stimuli in the intact field can be measured. Also, positive reactions of the autonomic nervous system, such as the galvanic skin response, can be recorded to visual stimuli presented in the blind field. Recent evidence demonstrates that the pupil in normal adult subjects is systematically sensitive to structural and chromatic features of visual stimuli. Pupillometry reveals specific changes and residual capacities in visual-field defects of adult patients with striate cortical damage. Thus non-verbal and sensitive methods are available that permit the comparative study of normal and residual visual capacity in human infants, adults and infra-human animals.

费里尔讲座,1989年。盲视的前景:隐式过程的显式方法。
在灵长类动物中,视网膜通过几条平行通路与大脑中的不同目标相连,其中最大的一条通路通往丘脑的外侧膝状核,然后通往纹状体皮层,即膝状核-纹状体通路。当这条通路在人体中受损时,尽管其他平行通路完好无损,但在相应的视野部分会出现明显的失明。在动物中,传统的行为强迫选择技术已经证明,外游路线可以维持各种视觉区分。当使用强迫选择“猜测”技术时,在一些膝下纹状体损伤的人类受试者中也可能出现类似的区分。“盲视”指的是那些声称自己没有意识到视觉刺激的受试者,即使他们在进行高水平的辨别时也是如此。综述了该方法的扩展,特别是光谱灵敏度和运动识别。但是,也可以在不需要猜测反应的情况下评估剩余能力,从而避免了不同反应标准的问题和其他实际困难。可以测量皮层盲视场中“看不见的”刺激对完整视场中并发刺激的可见感知的影响。此外,自主神经系统的积极反应,如皮肤电反应,可以记录到视觉刺激呈现在盲场。最近的证据表明,正常成人受试者的瞳孔对视觉刺激的结构和颜色特征具有系统的敏感性。瞳孔测量显示纹状皮质损伤的成人患者视野缺损的特殊变化和剩余能力。因此,可以使用非语言和敏感的方法对人类婴儿、成人和非人类动物的正常和残余视觉能力进行比较研究。
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Proceedings of the Royal Society of London Series B-Containing Papers of Abiological Character
Proceedings of the Royal Society of London Series B-Containing Papers of Abiological Character 生命科学, 发育生物学与生殖生物学, 发育生物学
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