Blazquez Pablo M, Highstein Stephen M
Department of Otolaryngology, Washington University School of Medicine, Saint Louis, Missouri 63110, USA.
Neuroreport. 2007 Aug 27;18(13):1403-6. doi: 10.1097/WNR.0b013e3282cdeedd.
The central nervous system combines information from different stimulus modalities to generate appropriate behaviors. For instance, vestibular and visual information are combined during oculomotor behavior. We used squirrel monkeys to study this signal combination on vestibular neurons that carry the vertical component of vestibular and visual (slow visual pathway, or optokinetic) signals. We found that these neurons contain a neuronal correlate of asymmetries observed in oculomotor behaviors, and that there is a relationship between their response to vestibular and visual (optokinetic) stimulation. We argue that if this relationship is maintained after learning, changes in one information pathway (e.g. vestibular) will result in changes in the other (e.g. visual), explaining the cross-modality plasticity observed in these systems after vestibulo-ocular reflex motor learning.
中枢神经系统整合来自不同刺激模态的信息以产生适当的行为。例如,在眼球运动行为中,前庭和视觉信息会被整合。我们使用松鼠猴来研究携带前庭和视觉(慢视觉通路,或视动性)信号垂直分量的前庭神经元上的这种信号整合。我们发现这些神经元包含在眼球运动行为中观察到的不对称性的神经元相关物,并且它们对前庭和视觉(视动性)刺激的反应之间存在一种关系。我们认为,如果这种关系在学习后得以维持,一个信息通路(如前庭)的变化将导致另一个通路(如视觉)的变化,这就解释了在前庭眼反射运动学习后在这些系统中观察到的跨模态可塑性。