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Drawing enhances cross-modal memory plasticity in the human brain: a case study in a totally blind adult

机译:绘画增强了人脑的跨模态记忆可塑性:一个完全盲人的案例研究

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摘要

In a memory-guided drawing task under blindfolded conditions, we have recently used functional Magnetic Resonance Imaging (fMRI) to demonstrate that the primary visual cortex (V1) may operate as the visuo-spatial buffer, or “sketchpad,” for working memory. The results implied, however, a modality-independent or amodal form of its operation. In the present study, to validate the role of V1 in non-visual memory, we eliminated not only the visual input but all levels of visual processing by replicating the paradigm in a congenitally blind individual. Our novel Cognitive-Kinesthetic method was used to train this totally blind subject to draw complex images guided solely by tactile memory. Control tasks of tactile exploration and memorization of the image to be drawn, and memory-free scribbling were also included. FMRI was run before training and after training. Remarkably, V1 of this congenitally blind individual, which before training exhibited noisy, immature, and non-specific responses, after training produced full-fledged response time-courses specific to the tactile-memory drawing task. The results reveal the operation of a rapid training-based plasticity mechanism that recruits the resources of V1 in the process of learning to draw. The learning paradigm allowed us to investigate for the first time the evolution of plastic re-assignment in V1 in a congenitally blind subject. These findings are consistent with a non-visual memory involvement of V1, and specifically imply that the observed cortical reorganization can be empowered by the process of learning to draw.
机译:在蒙住眼睛的情况下以记忆为指导的绘图任务中,我们最近使用了功能磁共振成像(fMRI)来证明初级视觉皮层(V1)可以用作视觉空间缓冲区或“素描板”,用于工作记忆。然而,结果暗示了其操作的形式独立或非形式形式。在本研究中,为了验证V1在非视觉记忆中的作用,我们通过在先天性盲人中复制范例,不仅消除了视觉输入,而且消除了所有层次的视觉处理。我们使用新颖的认知运动学方法来训练这个完全盲的对象,以仅靠触觉记忆来绘制复杂的图像。还包括触觉探索和记忆要绘制图像的控制任务,以及无内存乱写。 FMRI在训练前和训练后进行。值得注意的是,这个先天性盲人的V1在训练前表现出嘈杂,不成熟和非特定的反应,在训练后产生了特定于触觉记忆绘画任务的成熟反应时间过程。结果揭示了基于快速训练的可塑性机制的运作,该机制在学习绘画的过程中募集了V1的资源。学习范式使我们能够首次研究先天性盲目受试者在V1中进行塑性重分配的过程。这些发现与V1的非视觉记忆有关,并特别暗示观察到的皮质重组可通过学习绘画的过程来增强。

著录项

  • 作者

    Likova, Lora T.;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类
  • 入库时间 2022-08-20 20:40:52

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