Department of Orthopaedic Surgery, School of Medicine, Keio University, 35 Shinanomachi, Shinjuku-ku, Tokyo, 160-8582, Japan.
Department of Anatomy and Neuroscience, Shimane University School of Medicine, 89-1 Enya-cho, Izumo, 693-8501, Japan.
Brain Struct Funct. 2019 Jan;224(1):57-72. doi: 10.1007/s00429-018-1757-3. Epub 2018 Sep 24.
The diaphragm is driven by phrenic motoneurons that are located in the cervical spinal cord. Although the anatomical location of the phrenic nucleus and the function of phrenic motoneurons at a single cellular level have been extensively analyzed, the spatiotemporal dynamics of phrenic motoneuron group activity have not been fully elucidated. In the present study, we analyzed the functional and structural characteristics of respiratory neuron population in the cervical spinal cord at the level of the phrenic nucleus by voltage imaging, together with histological analysis of neuronal and astrocytic distribution in the cervical spinal cord. We found spatially distinct two cellular populations that exhibited synchronized inspiratory activity on the transversely cut plane at C4-C5 levels and on the ventral surface of the mid cervical spinal cord in the isolated brainstem-spinal cord preparation of the neonatal rat. Inspiratory activity of one group emerged in the central portion of the ventral horn that corresponded to the central motor column, and the other appeared in the medial portion of the ventral horn that corresponded to the medial motor column. We identified by retrogradely labeling study that the anatomical distributions of phrenic and scalene motoneurons coincided with optically detected central and medial motor regions, respectively. Furthermore, we anatomically demonstrated closely located features of putative motoneurons, interneurons and astrocytes in these regions. Collectively, we report that phrenic and scalene motoneuron populations show synchronized inspiratory activities with distinct anatomical locations in the mid cervical spinal cord.
膈神经由位于颈脊髓的膈神经运动神经元驱动。尽管膈神经核的解剖位置和膈神经运动神经元的单个细胞水平的功能已被广泛分析,但膈神经运动神经元群活动的时空动力学尚未完全阐明。在本研究中,我们通过电压成像分析了膈神经水平颈脊髓呼吸神经元群体的功能和结构特征,同时对颈脊髓神经元和星形胶质细胞的分布进行了组织学分析。我们发现,在新生大鼠离体延髓-脊髓标本的 C4-C5 水平的横切平面和颈脊髓腹面,存在空间上明显不同的两个细胞群体,它们表现出同步的吸气活动。一个群体的吸气活动出现在腹角的中央部分,对应于中央运动柱,另一个群体出现在腹角的内侧部分,对应于内侧运动柱。通过逆行标记研究,我们确定了膈神经和斜角肌运动神经元的解剖分布分别与光学检测到的中央和内侧运动区相对应。此外,我们在这些区域中解剖学地证明了假定的运动神经元、中间神经元和星形胶质细胞的紧密相邻特征。总之,我们报告膈神经和斜角肌运动神经元群体在颈脊髓中部具有不同的解剖位置,表现出同步的吸气活动。