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首页> 外文期刊>Restorative neurology and neuroscience >Cortical activity during tactile exploration of objects in blind and sighted humans.
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Cortical activity during tactile exploration of objects in blind and sighted humans.

机译:在盲人和有视力的人对物体进行触觉探索期间的皮质活动。

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摘要

PURPOSE: Recent studies show evidence of multisensory representation in the functionally normal visual cortex, but this idea remains controversial. Occipital cortex activation is often claimed to be a reflection of mental visual imagery processes triggered by other modalities. However, if the occipital cortex is genuinely active during touch, this might be the basis for the massive cross-modal plasticity observed in the congenitally blind. METHODS: To address these issues, we used fMRI to compare patterns of activation evoked by a tactile object recognition (TOR) task (right or left hand) in 8 sighted and 8 congenitally blind subjects, with several other control tasks. RESULTS: TOR robustly activated object selective regions in the lateral occipital complex (LOC/LOtv) in the blind (similar to the patterns of activation found in the sighted), indicating that object identification per se (i.e. in the absence of visual imagery) is sufficient to evoke responses in the LOC/LOtv. Importantly, there was negligible occipital activation for hand movements (imitating object palpations) in the occipital cortex, in both groups. Moreover, in both groups, TOR activation in the LOC/LOtv was bilateral, regardless of the palpating hand (similar to the lack of strong visual field preference in the LOC/LOtv for viewed objects). Finally, the most prominent enhancement in TOR activation in the congenitally blind (compared to their sighted peers) was found in the posterior occipital cortex. CONCLUSIONS: These findings suggest that visual imagery is not an obligatory condition for object activation in visual cortex. It also demonstrates the massive plasticity in visual cortex of the blind for tactile object recognition that involves both the ventral and dorsal occipital areas, probably to support the high demand for this function in the blind.
机译:目的:最近的研究表明在功能正常的视觉皮层中有多种感觉表现的证据,但这一观点仍存在争议。枕叶皮层的激活通常被认为是由其他方式触发的精神视觉影像过程的反映。但是,如果枕叶皮层在接触过程中真正活跃,则这可能是先天性盲者中观察到的大量交叉模态可塑性的基础。方法:为解决这些问题,我们使用功能磁共振成像技术比较了8名视力和8名先天盲人的触觉对象识别(TOR)任务(右手或左手)引起的激活模式,以及其他一些控制任务。结果:TOR在盲人的枕骨外侧枕复合体(LOC / LOtv)中强烈激活了对象选择区域(类似于在视线中发现的激活模式),表明对象识别本身(即在没有可视图像的情况下)是足以引起LOC / LOtv中的响应。重要的是,两组枕骨的手部运动(模仿对象触诊)的枕骨激活均可以忽略不计。此外,在两组中,无论触诊手如何,LOC / LOtv中的TOR激活都是双侧的(类似于LOC / LOtv中对查看对象缺乏强烈的视野偏爱)。最后,在枕后叶中发现了先天性盲人(与有视力的同龄人相比)TOR激活的最显着增强。结论:这些发现表明视觉图像不是视觉皮层中物体激活的强制条件。它还证明了盲目视觉皮层在触觉对象识别中具有巨大的可塑性,涉及到枕腹和后枕骨区域,这可能满足了对盲人这一功能的高要求。

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