Takakusaki Kaoru
Department of Physiology, Division of Neural Function, Asahikawa Medical College, Midorigaoka-Higashi, 2-1, Asahikawa 078-8510, Japan.
Brain Res Rev. 2008 Jan;57(1):192-8. doi: 10.1016/j.brainresrev.2007.06.024. Epub 2007 Aug 9.
Activation of different areas in the forebrain evokes different types of goal directed adaptive behaviors. An important component of these different patterns of behavior is the locomotion that brings the animal to or away from a particular location. Here I review the role of projections from forebrain structures to the mesopontine tegmentum of the brainstem where neural mechanisms for initiation of locomotion and regulation of postural muscle tone are located that are activated during locomotor behavior. It is interesting is to understand how signals that converge from the forebrain structures to the mesopontine tegmentum control locomotor behavior, because the mesopontine tegmentum receives inhibitory efferents from the basal ganglia and excitatory efferents from the limbic-hypothalamic system and the neocortex. Here I hypothesize that the mesopontine tegmentum has functional gating mechanisms that determine whether the subject will initiate and select volitionally guided or emotionally triggered locomotor behaviors, depending on the behavioral context.
前脑不同区域的激活会引发不同类型的目标导向适应性行为。这些不同行为模式的一个重要组成部分是使动物接近或远离特定位置的运动。在此,我将综述从前脑结构投射到脑干中脑桥被盖区的作用,运动起始和姿势肌张力调节的神经机制位于该区域,且在运动行为中被激活。有趣的是了解从前脑结构汇聚到中脑桥被盖区的信号如何控制运动行为,因为中脑桥被盖区接收来自基底神经节的抑制性传出纤维以及来自边缘 - 下丘脑系统和新皮质的兴奋性传出纤维。在此我假设中脑桥被盖区具有功能门控机制,该机制根据行为背景决定个体是否会发起并选择自主引导或情绪触发的运动行为。