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Functional cerebral reorganization for auditory spatial processing and auditory substitution of vision in early blind subjects.

机译:功能性大脑重组,用于早期盲人听觉空间处理和听觉视觉替代。

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摘要

Early blind (EB) individuals can recognize bidimensional shapes using a prosthesis substituting vision with audition (PSVA) and activate right dorsal extrastriate visual cortex during the execution of this task. The present study used repetitive transcranial magnetic stimulation (rTMS) to further examine the functional role of this structure in the successful use of the PSVA. Moreover, we investigated which auditory parameter used in the prosthesis (pitch, intensity, or spatial location) might contribute to this occipital activation. Results revealed that rTMS applied to right dorsal extrastriate cortex in EB subjects interferes with both the PSVA use and the auditory spatial location task but not with pitch and intensity discriminations. By contrast, rTMS targeting the same cortical areas in sighted subjects did not affect performance on any auditory tasks. Early visual deprivation thus leads to functional cerebral cross-modal reorganization in the processing of auditory information and auditory-to-visual sensory substitution. The findings also point to the specific involvement of the dorsal visual stream for auditory spatial processing in blind subjects. Moreover, this suggests that sensory substitution prostheses can be developed using these additional neural resources to perform tasks that partially compensate for the loss of vision.
机译:早期盲人(EB)可以使用人工视觉代替听觉视觉(PSVA)来识别二维形状,并在执行此任务时激活右背外侧视皮层。本研究使用重复经颅磁刺激(rTMS)来进一步检查该结构在PSVA成功使用中的功能。此外,我们调查了假体中使用的哪些听觉参数(音高,强度或空间位置)可能有助于此枕骨的激活。结果表明,将rTMS应用于EB受试者的右背外侧皮层皮质,既会干扰PSVA的使用,又会干扰听觉空间定位任务,但不会干扰音高和强度。相比之下,针对有视力对象的相同皮质区域的rTMS不会影响任何听觉任务的表现。早期的视觉剥夺因此导致听觉信息和听觉到视觉的感觉替代处理中的功能性大脑交叉模式重组。这些发现还指出了背侧视觉流在盲人听觉空间处理中的特定参与。此外,这表明可以使用这些额外的神经资源来开发感觉替代假体,以执行部分​​补偿视力丧失的任务。

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