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A brain of two halves: Insights into interhemispheric organization provided by near-infrared spectroscopy

机译:两半的大脑:近红外光谱提供的互脱球组织的见解

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The discovery of functional lateralization and localization of the brain marked the beginning of a new era in neuroscience. While the past 150 years of research have provided a great deal of knowledge of hemispheric differences and functional relationships, the precise organization of functional laterality remains a topic of intense debate. Here I will shed light on the functional organization of the two hemispheres by reviewing some of the most recent functional near-infrared spectroscopy (NIRS) studies that have reported hemispheric differences in activation patterns. Most NIRS studies using visual stimuli, which revealed functional differentiation between the hemispheres, have reported unilateral activation, i.e., significant levels of activation in only one hemisphere. Auditory stimuli, including speech sounds, elicited bilateral activation, while the limited number of studies on young infants revealed primarily unilateral activation. The stimulus modality and the age of the participants therefore determine whether the resulting cortical activation is unilateral or bilateral. By combining a review of the existing literature with NIRS results regarding homologous connectivity across hemispheres, I hypothesized that the origin of functional lateralization changes from the independence of each hemispheric region, to mutual inhibition between homologous regions during development Future studies applying multi-modal measurements along with NIRS and spatiotemporal analyses will further deepen our understanding of the interhemispheric organization of brain function.
机译:大脑的功能横向化和定位的发现标志着神经科学的新时代的开始。虽然过去150年的研究提供了对半球差异和功能关系的大量知识,但功能性横向性的确切组织仍然是激烈辩论的话题。在这里,我将通过审查一些最近的功能近红外光谱(NIRS)研究,阐明了两种半球的功能组织,所述近红外光谱(NIRS)研究报告了激活模式的半球差异。使用视觉刺激的大多数NIRS研究显示半球之间的功能分化,已经报道单侧活化,即仅在一个半球中的显着的活化水平。听觉刺激,包括语音声音,引发双侧激活,而对年轻婴儿的有限研究主要揭示单侧激活。因此,参与者的刺激方式和年龄确定所得的皮质激活是单侧还是双侧。通过结合对现有文献的审查,NIR在半球上的同源连接的结果中,我假设功能横向化的起源从每个半球区域的独立性变化,以在开发未来研究期间的同源地区之间的相互抑制,应用多模态测量随着NIRS和Spatiotemporal分析将进一步加深我们对脑功能互动性组织的理解。

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