Systems Neuroscience and Movement Disorders Laboratory, Korea Brain Research Institute, Daegu 701-300, South Korea; Laboratory for Symbolic Cognitive Development, RIKEN Brain Science Institute, Wako, Saitama 351-0198, Japan; Systems Neuroscience Section, Primate Research Institute, Kyoto University, Inuyama, Aichi 484-8506, Japan; Laboratory of Cognitive and Behavioral Neuroscience, Division of Biomedical Science, Faculty of Medicine, University of Tsukuba, Tsukuba, Ibaraki 305-8577, Japan.
Molecular Neuroimaging, Molecular Imaging Center, National Institute of Radiological Sciences, Chiba 263-8555, Japan.
Neuron. 2016 Jan 20;89(2):300-7. doi: 10.1016/j.neuron.2015.12.025.
Inappropriate vocal expressions, e.g., vocal tics in Tourette syndrome, severely impact quality of life. Neural mechanisms underlying vocal tics remain unexplored because no established animal model representing the condition exists. We report that unilateral disinhibition of the nucleus accumbens (NAc) generates vocal tics in monkeys. Whole-brain PET imaging identified prominent, bilateral limbic cortico-subcortical activation. Local field potentials (LFPs) developed abnormal spikes in the NAc and the anterior cingulate cortex (ACC). Vocalization could occur without obvious LFP spikes, however, when phase-phase coupling of alpha oscillations were accentuated between the NAc, ACC, and the primary motor cortex. These findings contrasted with myoclonic motor tics induced by disinhibition of the dorsolateral putamen, where PET activity was confined to the ipsilateral sensorimotor system and LFP spikes always preceded motor tics. We propose that vocal tics emerge as a consequence of dysrhythmic alpha coupling between critical nodes in the limbic and motor networks. VIDEO ABSTRACT.
不适当的发声表达,例如妥瑞氏症中的发声抽动,严重影响生活质量。发声抽动的神经机制仍未被探索,因为不存在能够代表这种情况的既定动物模型。我们报告单侧抑制伏隔核(NAc)会在猴子中产生发声抽动。全脑 PET 成像确定了明显的双侧边缘皮质下激活。局部场电位(LFPs)在 NAc 和前扣带皮层(ACC)中产生异常尖峰。然而,当 NAc、ACC 和初级运动皮层之间的α 振荡的相位-相位耦合被强调时,发声可以在没有明显 LFPs 尖峰的情况下发生。这些发现与背外侧纹状体抑制引起的肌阵挛运动抽动形成对比,其中 PET 活动仅限于同侧感觉运动系统,并且 LFPs 尖峰总是先于运动抽动。我们提出,发声抽动是边缘和运动网络中关键节点之间节律失调的 α 耦合的结果。视频摘要。