Department of Physical Medicine & Rehabilitation, Case Western Reserve University and MetroHealth Medical Center, 2500 MetroHealth Drive, Cleveland, OH 44109, United States.
Respir Physiol Neurobiol. 2013 Mar 1;186(1):1-6. doi: 10.1016/j.resp.2012.12.003. Epub 2012 Dec 20.
High frequency spinal cord stimulation (HF-SCS) is a method of inspiratory muscle activation resulting in phrenic motoneuron activation via stimulation of spinal cord pathways. The specific pathways mediating this response, however, are unknown. The aim of this study was to assess the potential role of upper cervical (C1-C4) pre-phrenic interneurons (UCI) and localize the pathways in the thoracic spinal cord mediating activation of phrenic motoneurons during HF-SCS. In 7 anesthetized, spinalized (C1 level) dogs, HF-SCS was applied at the T2 level. Diaphragm EMG, inspired volume and airway pressure generation were monitored before and following sequential spinal cord sections at the C4 and C8 levels. Section at the C4 level and dorsal columns at C8 resulted in no significant changes. However, lateral funiculi section (C8 level) resulted in significant reductions in each parameter. We conclude that during upper thoracic HF-SCS, the phrenic motoneuron pools are activated via spinal pathways located in the lateral funiculus but UCI are not involved.
高频脊髓刺激(HF-SCS)是一种吸气肌激活方法,通过刺激脊髓途径导致膈运动神经元激活。然而,介导这种反应的确切途径尚不清楚。本研究旨在评估上颈(C1-C4)膈前神经元(UCI)在高频脊髓刺激期间激活膈运动神经元的潜在作用,并定位胸段脊髓中介导膈运动神经元激活的途径。在 7 只麻醉、脊髓切断(C1 水平)的狗中,在 T2 水平施加高频脊髓刺激。在 C4 和 C8 水平进行脊髓节段连续切除前后监测膈肌 EMG、吸气量和气道压力产生。C4 水平的节段和 C8 水平的背柱导致无显著变化。然而,侧束(C8 水平)的节段导致每个参数的显著减少。我们的结论是,在上胸部高频脊髓刺激期间,膈运动神经元池通过位于侧束中的脊髓途径被激活,但 UCI 不参与。