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Unilateral Auditory Cortex Lesions Impair or Improve Discrimination Learning of Amplitude Modulated Sounds Depending on Lesion Side

机译:视病变侧而定单侧听觉皮层病变会损害或改善调幅声音的识别学习

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摘要

A fundamental principle of brain organization is bilateral symmetry of structures and functions. For spatial sensory and motor information processing, this organization is generally plausible subserving orientation and coordination of a bilaterally symmetric body. However, breaking of the symmetry principle is often seen for functions that depend on convergent information processing and lateralized output control, e.g. left hemispheric dominance for the linguistic speech system. Conversely, a subtle splitting of functions into hemispheres may occur if peripheral information from symmetric sense organs is partly redundant, e.g. auditory pattern recognition, and therefore allows central conceptualizations of complex stimuli from different feature viewpoints, as demonstrated e.g. for hemispheric analysis of frequency modulations in auditory cortex (AC) of mammals including humans. Here we demonstrate that discrimination learning of rapidly but not of slowly amplitude modulated tones is non-uniformly distributed across both hemispheres: While unilateral ablation of left AC in gerbils leads to impairment of normal discrimination learning of rapid amplitude modulations, right side ablations lead to improvement over normal learning. These results point to a rivalry interaction between both ACs in the intact brain where the right side competes with and weakens learning capability maximally attainable by the dominant left side alone.
机译:大脑组织的基本原理是结构和功能的双边对称。对于空间感官和运动信息处理,该组织通常是合理的,可以保持双向对称体的定向和协调。然而,对于依赖于会聚信息处理和横向输出控制的功能,例如,通常会破坏对称原理。语言语音系统的左半球优势。相反,如果来自对称感觉器官的外围信息部分冗余,例如,可能将功能微妙地分成半球。听觉模式识别,因此可以从不同的特征角度对复杂刺激进行集中概念化,例如用于对包括人类在内的哺乳动物的听觉皮层(AC)中的频率调制进行半球分析。在这里,我们证明了快速但不是缓慢振幅调制音的识别学习在两个半球上是不均匀分布的:虽然沙土鼠左交流的单侧消融会损害快速振幅调制的正常辨别学习,但右侧消融会导致改善超过正常的学习。这些结果表明,完整大脑中两个AC之间的竞争性交互作用是,右侧的竞争与竞争削弱了单独的优势左侧最大可达到的学习能力。

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