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Using structural and functional brain imaging to uncover how the brain adapts to blindness

机译:使用结构和功能性大脑成像来发现大脑如何适应失明

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摘要

Advances in neuroimaging technology have been instrumental in uncovering the dramatic neurological changes that result from blindness, as well as revealing the inner workings of the human brain. Specifically, modern imaging techniques enable us to examine how the brain adapts and “re-wires” itself as a result of changes in behavior, the environment, injury, or disease; a process referred to as neuroplasticity. Following an overview of commonly employed neuroimaging techniques, we discuss structural and functional neuroplastic brain changes associated with profound visual deprivation. In particular, we highlight how associated structural changes often occur within areas that process intact senses (such as hearing, touch, and smell) while functional changes tend to implicate areas of the brain normally ascribed to the processing of visual information. Evidence will primarily focus on profound blindness due to ocular cause, but related work in cerebral/cortical visual impairment (CVI) will also be discussed. The potential importance of these findings within the context of education and rehabilitation is proposed.
机译:神经影像技术的进步有助于揭示由失明导致的剧烈神经系统变化,以及揭示人脑的内部功能。具体而言,现代成像技术使我们能够检查由于行为,环境,伤害或疾病的变化而导致大脑如何适应和“重新连接”自身。被称为神经可塑性的过程。在概述了常用的神经成像技术之后,我们讨论了与深度视觉剥夺相关的结构和功能性神经增生性大脑变化。特别是,我们强调了相关的结构变化通常在处理完整感官(例如听觉,触觉和嗅觉)的区域内经常发生,而功能变化倾向于暗示通常归因于视觉信息处理的大脑区域。证据将主要集中在由于眼病引起的严重失明,但还将讨论脑/皮质视力障碍(CVI)的相关工作。建议在教育和康复的背景下这些发现的潜在重要性。

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