Bucher Dirk, Taylor Adam L, Marder Eve
Volen Center and Biology Department, Brandeis University, Waltham, Massachusetts, USA.
J Neurophysiol. 2006 Jun;95(6):3617-32. doi: 10.1152/jn.00004.2006. Epub 2006 Feb 22.
Neuronal firing patterns can contain different temporal information. It has long been known that the fast pyloric and the slower gastric motor patterns in the stomatogastric ganglion of decapod crustaceans interact. However, the bidirectional influences between the pyloric rhythm and the gastric mill rhythm have not been quantified in detail from preparations that spontaneously express both patterns in vitro. We found regular and stable spontaneous gastric and pyloric activity in 71% of preparations of the isolated stomatogastric nervous system of the lobster, Homarus americanus. The gastric [cycle period: 10.96 +/- 2.67 (SD) s] and pyloric (cycle period: 1.35 +/- 0.18 s) patterns showed bidirectional interactions and coordination. Gastric neuron firing showed preferred phases within the reference frame of the pyloric cycle. The relative timing and burst parameters of the pyloric neurons systematically changed within the reference frame of the gastric cycle. The gastric rhythm showed a tendency to run at cycle periods that were integer multiples of the pyloric periods, but coupling and coordination between the two rhythms were variable. We used power spectra to quantify the gastric and pyloric contributions to the firing pattern of each individual neuron. This provided us with a way to analyze the firing pattern of each gastric and pyloric neuron type individually without reference to either gastric or pyloric phase. Possible functional consequences of these network interactions for motor output are discussed.
神经元放电模式可以包含不同的时间信息。长期以来,人们一直知道十足目甲壳动物口胃神经节中快速的幽门节律和较慢的胃运动节律相互作用。然而,在体外自发表达这两种节律的标本中,幽门节律和胃磨节律之间的双向影响尚未得到详细量化。我们在美洲螯龙虾离体口胃神经系统的71%的标本中发现了规律且稳定的自发胃和幽门活动。胃(周期时长:10.96±2.67(标准差)秒)和幽门(周期时长:1.35±0.18秒)模式显示出双向相互作用和协调。胃神经元放电在幽门周期的参考框架内呈现出偏好相位。幽门神经元的相对时间和爆发参数在胃周期的参考框架内系统性地变化。胃节律呈现出以幽门周期的整数倍周期运行的趋势,但两种节律之间的耦合和协调是可变的。我们使用功率谱来量化胃和幽门对每个单个神经元放电模式的贡献。这为我们提供了一种方法,可以在不参考胃或幽门相位的情况下单独分析每种胃和幽门神经元类型的放电模式。讨论了这些网络相互作用对运动输出可能产生的功能后果。