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Petra Stoerig

Publications and source records attributed to Petra Stoerig.

6 recordsLinked to original sources

Blindsight, conscious vision, and the role of primary visual cortex.

What is the role the primary visual cortex (V1) in vision? Is it necessary for conscious sight, as indicated by the cortical blindness that results from V1 destruction? Is it even necessary for blindsight, the nonreflexive visual functions that can be evoked with stimuli presented to cortically blind fields? In the context of this controversial issue, I present evidence indicating that not only is blindsight possible, but that conscious vision may, to a varying degree, return to formerly blind fields with time and practice even in cases where functional neuroimaging reveals no V1 activation.

Animals↗

Image-to-sound conversion: experience-induced plasticity in auditory cortex of blindfolded adults.

The ability to adapt to environmental changes is based on the impressive capacity of the central nervous system for plasticity changes. A better understanding of the requirements of neuroplasticity will help to apprehend and predict the success of sensory prostheses. To investigate neuroplastic changes associated with (1) blindfolding and (2) the use of a mobile visual-auditory substitution system, five normally sighted adults underwent weekly measurements of neuromagnetic activity using a 122-channel whole head neuromagnetometer. The substitution device converted visual images into sound patterns. During measurements subjects listened to "geometric sounds" converted from images of geometric shapes, "natural sounds" representing photographs of everyday objects, as well as to original "environmental sounds". To assess the role of visual deprivation, three individuals were blindfolded throughout a 3-week testing period. To assess the effect of extended exposure to "visual sounds", three subjects-two blindfolded, one sighted-had free use of the substitution device. Neuromagnetic responses were restricted to the auditory cortex across all measurements. Activity at 100 ms after presentation of "natural sounds", but not other auditory stimuli, showed a significant enhancement over time only in blindfolded subjects using the substitution system, indicating that the combination of visual deprivation and practice facilitated intra-modal plasticity. The fact that changes occurred only in response to "natural sounds" probably reflects the increased behavioural relevance of this category evident only for blindfolded subjects using the substitution device.

Acoustic Stimulation↗

Stimulus cueing in blindsight.

When visual stimuli are presented in the cortically blind visual field of patients or monkeys with verified destruction of striate cortex, many subjects can voluntarily respond to them. In studies of this blindsight, the on- and/or offset of the visual stimulus is usually known to the subject, either because it is signaled in some way or because the subject can present the stimulus himself. To study the effect of stimulus uncertainty on the responses of four hemianopic monkeys and one human hemianope, we compared trials on which the subjects themselves could instantly trigger the stimulus with trials on which the same stimulus appeared 1-7 s after the start-light that normally served as the trigger was first touched. The latter manipulation diminished both the percentage of trials on which the subjects responded and the percentage correct when they did respond. As the start-light disappeared when touched in the first but not second condition, we interpret our results as indicating an influential role for attention in blindsight. Although keeping attention focused on the start-light and delaying the target impaired performance especially in the monkeys, localization was still significant in three and hardly affected in GY.

Animals↗

Chromatic priming in hemianopic visual fields.

In three monkeys made hemianopic by unilateral striate cortical ablation, in one normal monkey and in a human hemianope (GY), we measured reaction times to chromatic targets presented in the normal hemifield as a function of prior chromatic primes in the blind field. The first of our three tasks showed an unspecific priming effect in that the colour of the here unpredictive prime was irrelevant. However, when contingencies were changed in the second task so that the prime was usually valid, its colour did significantly influence reaction times in two of the hemianopic monkeys as well as in the human subject. Even when the primes lost their predictive value again in the third task, this chromatically specific effect persisted. We conclude that chromatic processing in the cortically blind field can be revealed with indirect approaches that measure residual processing by its influence on the reaction to stimuli in the normal field, and that the validity of the prime (whether it predicts the colour of the target) is especially important.

Animals↗

Aware or unaware: assessment of cortical blindness in four men and a monkey.

In four patients and one monkey with unilateral visual field defects caused by retro-geniculate lesions we measured forced-choice localization of square-wave gratings as a function of contrast, and compared results from the patients' absolutely and relatively blind fields. In addition, the patients indicated verbally whether they were aware of the stimuli. We then switched to a signal detection task in which the subjects had to signal a stimulus as in the localization task, by touching it, no matter whether it appeared in the good or bad hemifield, and in addition to signal a blank trial by touching an outlined square now constantly present on the monitor, and designated the no-stimulus response area. In this way, we could compare a non-verbal procedure that we had previously used in hemianopic monkeys with a verbal one commonly used to assess visual awareness. The results showed a close correspondence between the two measures of awareness in the human subjects who signalled 'stimulus' only for targets that also evoked verbal aware responses, validating the non-verbal approach. The hemianopic monkey behaved more like a patient with an absolute rather than a relative defect, and perfectly localized high-contrast stimuli which she nevertheless treated as blanks in the vast majority of presentations in the signal detection task.

Animals↗