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首页> 外文期刊>Current opinion in neurology >The brain as a flexible task machine: implications for wisual rehabilitation using noninwasiwe approaches
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The brain as a flexible task machine: implications for wisual rehabilitation using noninwasiwe approaches

机译:作为灵活的任务机器的大脑:使用非介入方法进行智慧康复的意义

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The exciting view of our brain as highly flexible task-based and not sensory-based raises the chances for visual rehabilitation, long considered unachievable, given adequate training in teaching the brain how to see. Recent advances in rehabilitation approaches, both noninvasive, like sensory substitution devices (SSDsj which present visual information using sound or touch, and invasive, like visual prosthesis, may potentially be used to achieve this goal, each alone, and most preferably together.Visual impairments and said solutions are being used as a model for answering fundamental questions ranging from basic cognitive neuroscience, showing that several key visual brain areas are actually highly flexible, modality-independent and, as was recently shown, even visual experience-independent task machines, to technological and behavioral developments, allowing blind persons to 'see' using SSDs and other approaches.SSDs can be potentially used as a research tool for assessing the brain's functional organization; as an aid for the blind in daily visual tasks; to visually train the brain prior to invasive procedures, by taking advantage of the 'visual' cortex's flexibility and task specialization even in the absence of vision; and to augment postsurgery functional vision using a unique SSD-prostheses hybrid. Taken together the reviewed results suggest a brighter future for visual neuro-rehabilitation.
机译:我们的大脑令人兴奋的观点是高度灵活的基于任务的而不是基于感官的,这给人们带来了视觉康复的机会,长期以来人们认为这是无法实现的,并且要经过足够的训练来指导大脑如何看待。康复方法的最新进展,无论是非侵入性的,例如感觉替代设备(SSDsj,其通过声音或触摸来显示视觉信息),还是侵入性的,例如视觉假体,都可能单独地,最优选地一起用于实现这一目标。所述解决方案正被用作回答基本认知神经科学等基本问题的模型,显示出几个关键的视觉大脑区域实际上是高度灵活的,独立于模态的,并且如最近所示,甚至是独立于视觉体验的任务机,以及技术和行为的发展,使盲人可以使用SSD和其他方法来``看见''.SSD可以潜在地用作评估大脑功能组织的研究工具;在日常视觉任务中为盲人提供帮助;以视觉方式训练大脑在进行侵入性手术之前,通过利用“视觉”皮层的灵活性和任务专门性在没有视力的情况下;并使用独特的SSD假体混合材料增强手术后的功能视野。综上所述,所审查的结果表明视觉神经康复的光明前景。

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