Department of Applied Science, The College of William and Mary, Williamsburg, Virginia 23185, USA.
Department of Physiology, Neuroscience and Mental Health Institute, Women and Children's Health Research Institute, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Alberta T6G 2E1, Canada.
Sci Data. 2017 Aug 1;4:170097. doi: 10.1038/sdata.2017.97.
The relationship between neuron morphology and function is a perennial issue in neuroscience. Information about synaptic integration, network connectivity, and the specific roles of neuronal subpopulations can be obtained through morphological analysis of key neurons within a microcircuit. Here we present morphologies of two classes of brainstem respiratory neurons. First, interneurons derived from Dbx1-expressing precursors (Dbx1 neurons) in the preBötzinger complex (preBötC) of the ventral medulla that generate the rhythm for inspiratory breathing movements. Second, Dbx1 neurons of the intermediate reticular formation that influence the motor pattern of pharyngeal and lingual movements during the inspiratory phase of the breathing cycle. We describe the image acquisition and subsequent digitization of morphologies of respiratory Dbx1 neurons from the preBötC and the intermediate reticular formation that were first recorded in vitro. These data can be analyzed comparatively to examine how morphology influences the roles of Dbx1 preBötC and Dbx1 reticular interneurons in respiration and can also be utilized to create morphologically accurate compartmental models for simulation and modeling of respiratory circuits.
神经元形态和功能之间的关系是神经科学中的一个长期存在的问题。通过对微电路中关键神经元的形态分析,可以获得关于突触整合、网络连接以及神经元亚群特定作用的信息。在这里,我们展示了脑干呼吸神经元的两种类型的形态。首先,源自腹侧髓质 PreBötzinger 复合体 (preBötC) 中表达 Dbx1 的前体细胞 (Dbx1 神经元) 的中间神经元,产生吸气呼吸运动的节律。其次,Dbx1 神经元位于中间网状结构,影响呼吸周期吸气相期间咽和舌的运动模式。我们描述了从 PreBötC 和中间网状结构中首次记录的呼吸 Dbx1 神经元的形态的图像采集和随后的数字化,这些数据可以进行比较分析,以研究形态如何影响 Dbx1 PreBötC 和 Dbx1 网状中间神经元在呼吸中的作用,也可以用于创建形态准确的隔室模型,用于呼吸回路的模拟和建模。