Department of Neuroscience, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6074, USA.
J Neurosci. 2012 Jul 4;32(27):9182-93. doi: 10.1523/JNEUROSCI.1461-12.2012.
Bidirectional communication (i.e., feedforward and feedback pathways) between functional levels is common in neural systems, but in most systems little is known regarding the function and modifiability of the feedback pathway. We are exploring this issue in the crab (Cancer borealis) stomatogastric nervous system by examining bidirectional communication between projection neurons and their target central pattern generator (CPG) circuit neurons. Specifically, we addressed the question of whether the peptidergic post-oesophageal commissure (POC) neurons trigger a specific gastric mill (chewing) motor pattern in the stomatogastric ganglion solely by activating projection neurons, or by additionally altering the strength of CPG feedback to these projection neurons. The POC-triggered gastric mill rhythm is shaped by feedback inhibition onto projection neurons from a CPG neuron. Here, we establish that POC stimulation triggers a long-lasting enhancement of feedback-mediated IPSC/Ps in the projection neurons, which persists for the same duration as POC-gastric mill rhythms. This strengthened CPG feedback appears to result from presynaptic modulation, because it also occurs in other projection neurons whose activity does not change after POC stimulation. To determine the function of this strengthened feedback synapse, we compared the influence of dynamic-clamp-injected feedback IPSPs of pre- and post-POC amplitude into a pivotal projection neuron after POC stimulation. Only the post-POC amplitude IPSPs elicited the POC-triggered activity pattern in this projection neuron and enabled full expression of the POC-gastric mill rhythm. Thus, the strength of CPG feedback to projection neurons is modifiable and can be instrumental to motor pattern selection.
双向通讯(即前馈和反馈通路)在神经系统中很常见,但在大多数系统中,关于反馈通路的功能和可调节性知之甚少。我们通过检查投射神经元与其目标中央模式发生器(CPG)回路神经元之间的双向通讯,来探索蟹(Cancer borealis)的口胃神经系统中的这个问题。具体来说,我们解决了这样一个问题,即肽能后食管神经节(POC)神经元是否仅通过激活投射神经元,或者通过另外改变这些投射神经元的 CPG 反馈强度,来触发口胃神经节中的特定胃磨(咀嚼)运动模式。POC 触发的胃磨节律是由 CPG 神经元对投射神经元的反馈抑制形成的。在这里,我们确定 POC 刺激会引发投射神经元中反馈介导的 IPSC/Ps 的长时间增强,其持续时间与 POC-胃磨节律相同。这种增强的 CPG 反馈似乎是由于突触前调制所致,因为它也发生在其他投射神经元中,这些神经元的活动在 POC 刺激后不会改变。为了确定这个强化的反馈突触的功能,我们比较了在 POC 刺激后,将 POC 前和 POC 后幅度的动态钳制注入反馈 IPSP 引入关键投射神经元的影响。只有 POC 后幅度 IPSP 会引发投射神经元中的 POC 触发活动模式,并使 POC-胃磨节律得以充分表达。因此,CPG 反馈到投射神经元的强度是可调节的,并且可以对运动模式选择起到关键作用。