Best Christoph, Lange Elena, Buchholz Hans-Georg, Schreckenberger Mathias, Reuss Stefan, Dieterich Marianne
Department of Neurology, Vestibular Research Unit, Philipps-University Marburg, Baldingerstrasse, 35043, Marburg, Germany,
Brain Struct Funct. 2014 Nov;219(6):2141-58. doi: 10.1007/s00429-013-0628-1. Epub 2013 Aug 25.
Lateralization of cortical functions such as speech dominance, handedness and processing of vestibular information are present not only in humans but also in ontogenetic older species, e.g. rats. In human functional imaging studies, the processing of vestibular information was found to be correlated with the hemispherical dominance as determined by the handedness. It is located mainly within the right hemisphere in right handers and within the left hemisphere in left handers. Since dominance of vestibular processing is unknown in animals, our aim was to study the lateralization of cortical processing in a functional imaging study applying small-animal positron emission tomography (microPET) and galvanic vestibular stimulation in an in vivo rat model. The cortical and subcortical network processing vestibular information could be demonstrated and correlated with data from other animal studies. By calculating a lateralization index as well as flipped region of interest analyses, we found that the vestibular processing in rats follows a strong left hemispheric dominance independent from the "handedness" of the animals. These findings support the idea of an early hemispheric specialization of vestibular cortical functions in ontogenetic older species.
诸如语言优势、利手性和前庭信息处理等皮质功能的偏侧化不仅存在于人类中,也存在于个体发育较成熟的物种中,例如大鼠。在人类功能成像研究中,发现前庭信息的处理与由利手性所确定的半球优势相关。在右利手者中,它主要位于右半球,而在左利手者中则位于左半球。由于动物前庭处理的优势尚不清楚,我们的目的是在一项功能成像研究中,应用小动物正电子发射断层扫描(microPET)和电刺激前庭,在体内大鼠模型中研究皮质处理的偏侧化。可以证明处理前庭信息的皮质和皮质下网络,并将其与其他动物研究的数据相关联。通过计算偏侧化指数以及翻转感兴趣区域分析,我们发现大鼠的前庭处理遵循强烈的左半球优势,与动物的“利手性”无关。这些发现支持了在个体发育较成熟的物种中前庭皮质功能早期半球特化的观点。