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鸟类视觉偏侧化的功能与结构比较——相似却仍有差异

Functional and structural comparison of visual lateralization in birds - similar but still different.

作者信息

Manns Martina, Ströckens Felix

机构信息

Department of Biopsychology, Institute of Cognitive Neuroscience, Faculty of Psychology, Ruhr-University Bochum Bochum, Germany.

出版信息

Front Psychol. 2014 Mar 25;5:206. doi: 10.3389/fpsyg.2014.00206. eCollection 2014.

Abstract

Vertebrate brains display physiological and anatomical left-right differences, which are related to hemispheric dominances for specific functions. Functional lateralizations likely rely on structural left-right differences in intra- and interhemispheric connectivity patterns that develop in tight gene-environment interactions. The visual systems of chickens and pigeons show that asymmetrical light stimulation during ontogeny induces a dominance of the left hemisphere for visuomotor control that is paralleled by projection asymmetries within the ascending visual pathways. But structural asymmetries vary essentially between both species concerning the affected pathway (thalamo- vs. tectofugal system), constancy of effects (transient vs. permanent), and the hemisphere receiving stronger bilateral input (right vs. left). These discrepancies suggest that at least two aspects of visual processes are influenced by asymmetric light stimulation: (1) visuomotor dominance develops within the ontogenetically stronger stimulated hemisphere but not necessarily in the one receiving stronger bottom-up input. As a secondary consequence of asymmetrical light experience, lateralized top-down mechanisms play a critical role in the emergence of hemispheric dominance. (2) Ontogenetic light experiences may affect the dominant use of left- and right-hemispheric strategies. Evidences from social and spatial cognition tasks indicate that chickens rely more on a right-hemispheric global strategy whereas pigeons display a dominance of the left hemisphere. Thus, behavioral asymmetries are linked to a stronger bilateral input to the right hemisphere in chickens but to the left one in pigeons. The degree of bilateral visual input may determine the dominant visual processing strategy when redundant encoding is possible. This analysis supports that environmental stimulation affects the balance between hemispheric-specific processing by lateralized interactions of bottom-up and top-down systems.

摘要

脊椎动物的大脑表现出生理和解剖学上的左右差异,这与特定功能的半球优势有关。功能偏侧化可能依赖于在紧密的基因-环境相互作用中发展起来的半球内和半球间连接模式的结构左右差异。鸡和鸽子的视觉系统表明,个体发育过程中不对称的光刺激会导致左半球在视觉运动控制方面占主导地位,这与上行视觉通路内的投射不对称情况相平行。但在受影响的通路(丘脑与顶盖-离中系统)、效应的稳定性(短暂与永久)以及接受更强双侧输入的半球(右与左)方面,两种物种的结构不对称情况存在本质差异。这些差异表明,视觉过程的至少两个方面受到不对称光刺激的影响:(1)视觉运动优势在个体发育中受更强刺激的半球内发展,但不一定在接受更强自下而上输入的半球中发展。作为不对称光体验的次要结果,偏侧化的自上而下机制在半球优势的出现中起关键作用。(2)个体发育过程中的光体验可能会影响左右半球策略的优势使用。来自社会和空间认知任务的证据表明,鸡更多地依赖右半球的全局策略,而鸽子则表现出左半球占主导地位。因此,行为不对称与鸡右半球更强的双侧输入相关,但与鸽子左半球更强的双侧输入相关。当可能进行冗余编码时,双侧视觉输入的程度可能决定主导的视觉处理策略。这一分析支持环境刺激通过自下而上和自上而下系统的偏侧化相互作用影响半球特异性处理之间的平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f2b/3971188/7f4b85817c36/fpsyg-05-00206-g001.jpg

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