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触摸文本:盲人读者中盲文字母表征的时空演变。

Touch to text: Spatiotemporal evolution of braille letter representations in blind readers.

作者信息

Teng Santani, Cichy Radoslaw, Pantazis Dimitrios, Oliva Aude

机构信息

The Smith-Kettlewell Eye Research Institute.

Computer Science and Artificial Intelligence Laboratory, MIT.

出版信息

bioRxiv. 2024 Oct 31:2024.10.30.620429. doi: 10.1101/2024.10.30.620429.

Abstract

Visual deprivation does not silence the visual cortex, which is responsive to auditory, tactile, and other nonvisual tasks in blind persons. However, the underlying functional dynamics of the neural networks mediating such crossmodal responses remain unclear. Here, using braille reading as a model framework to investigate these networks, we presented sighted (N=13) and blind (N=12) readers with individual visual print and tactile braille alphabetic letters, respectively, during MEG recording. Using time-resolved multivariate pattern analysis and representational similarity analysis, we traced the alphabetic letter processing cascade in both groups of participants. We found that letter representations unfolded more slowly in blind than in sighted brains, with decoding peak latencies ~200 ms later in braille readers. Focusing on the blind group, we found that the format of neural letter representations transformed within the first 500 ms after stimulus onset from a low-level structure consistent with peripheral nerve afferent coding to high-level format reflecting pairwise letter embeddings in a text corpus. The spatiotemporal dynamics of the transformation suggest that the processing cascade proceeds from a starting point in somatosensory cortex to early visual cortex and then to inferotemporal cortex. Together our results give insight into the neural mechanisms underlying braille reading in blind persons and the dynamics of functional reorganization in sensory deprivation.

摘要

视觉剥夺并不会使视觉皮层沉默,盲人的视觉皮层对听觉、触觉及其他非视觉任务仍有反应。然而,介导这种跨模态反应的神经网络的潜在功能动力学仍不清楚。在这里,我们以盲文阅读作为研究这些网络的模型框架,在脑磁图(MEG)记录过程中,分别向有视力者(N = 13)和盲人(N = 12)阅读者呈现单个视觉印刷体和触觉盲文字母。使用时间分辨多变量模式分析和表征相似性分析,我们追踪了两组参与者的字母处理过程。我们发现,与有视力者相比,盲人的字母表征展开得更慢,盲文阅读者的解码峰值潜伏期晚约200毫秒。聚焦于盲人组,我们发现,在刺激开始后的前500毫秒内,神经字母表征的形式从与外周神经传入编码一致的低层次结构转变为反映文本语料库中字母对嵌入的高层次形式。这种转变的时空动态表明,处理过程从体感皮层的一个起始点开始,到早期视觉皮层,再到颞下皮层。我们的研究结果共同揭示了盲人盲文阅读背后的神经机制以及感觉剥夺中功能重组的动力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cdff/11565808/c2f1c035f717/nihpp-2024.10.30.620429v1-f0001.jpg

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