Bucher Dirk, Thirumalai Vatsala, Marder Eve
Volen Center and Biology Department, Brandeis University, Waltham, Massachusetts 02454-9110, USA.
J Neurosci. 2003 Jul 30;23(17):6866-75. doi: 10.1523/JNEUROSCI.23-17-06866.2003.
We studied the effects of dopamine on the stomatogastric ganglion (STG) of the lobster, Homarus americanus. The two pyloric dilator (PD) neurons are active in the pyloric rhythm, have somata in the STG, and send axons many centimeters to innervate muscles of the stomach. Dopamine application to the stomatogastric nervous system when the PD neurons were rhythmically active evoked additional action potentials during the PD neuron interburst intervals. These action potentials were peripherally generated at a region between the STG and the first bilateral branch, approximately 1 cm away from the STG, and traveled antidromically to the neuropil and orthodromically to the pyloric dilator muscles. Focal applications of dopamine to the nerves showed that spikes could be initiated in almost the entire peripheral axon of the PD neurons. Dopamine also evoked spikes in isolated peripheral axons. The concentration threshold for peripheral spike initiation was at or below 10-9 m dopamine. Thus, the peripheral axon can play an important role in shaping the output signaling to the muscles by the motor neuron.
我们研究了多巴胺对美洲螯龙虾口胃神经节(STG)的影响。两个幽门扩张肌(PD)神经元在幽门节律中活跃,其胞体位于口胃神经节内,并发出轴突延伸数厘米以支配胃部肌肉。当PD神经元有节律地活动时,将多巴胺施加于口胃神经系统,会在PD神经元爆发间期诱发额外的动作电位。这些动作电位在外周产生于口胃神经节与第一个双侧分支之间的区域,距离口胃神经节约1厘米,以逆行方式传至神经纤维网,并以顺行方式传至幽门扩张肌。向神经局部施加多巴胺表明,几乎在PD神经元的整个外周轴突中都能引发动作电位。多巴胺也能在分离的外周轴突中诱发动作电位。外周动作电位起始的浓度阈值为10-9 M多巴胺或更低。因此,外周轴突在塑造运动神经元向肌肉输出信号方面可发挥重要作用。