Department of Physical Therapy, University of Florida, United States of America; McKnight Brain Institute, University of Florida, United States of America; Rehabilitation Science PhD Program, University of Florida, United States of America; Center for Respiratory Research and Rehabilitation, University of Florida, United States of America.
Department of Physical Therapy, University of Florida, United States of America; Rehabilitation Science PhD Program, University of Florida, United States of America; Center for Respiratory Research and Rehabilitation, University of Florida, United States of America.
Exp Neurol. 2020 Jun;328:113256. doi: 10.1016/j.expneurol.2020.113256. Epub 2020 Feb 19.
Spinal interneurons which discharge in phase with the respiratory cycle have been repeatedly described over the last 50 years. These spinal respiratory interneurons are part of a complex propriospinal network that is synaptically coupled with respiratory motoneurons. This article summarizes current knowledge regarding spinal respiratory interneurons and emphasizes chemical, electrical and physiological methods for activating spinal respiratory neural circuits. Collectively, the work reviewed here shows that activating spinal interneurons can have a powerful impact on spinal respiratory motor output, and can even drive rhythmic bursting in respiratory motoneuron pools under certain conditions. We propose that the primary functions of spinal respiratory neurons include 1) shaping the respiratory pattern into the final efferent motor output from the spinal respiratory nerves; 2) coordinating respiratory muscle activation across the spinal neuraxis; 3) coordinating postural, locomotor and respiratory movements, and 4) enabling plasticity of respiratory motor output in health and disease.
过去 50 年来,人们反复描述了与呼吸周期同步放电的脊髓中间神经元。这些脊髓呼吸中间神经元是一个复杂的 propriospinal 网络的一部分,该网络与呼吸运动神经元突触耦联。本文总结了目前关于脊髓呼吸中间神经元的知识,并强调了激活脊髓呼吸神经回路的化学、电和生理方法。总的来说,这里回顾的工作表明,激活脊髓中间神经元可以对脊髓呼吸运动输出产生强大的影响,并且在某些条件下甚至可以驱动呼吸运动神经元池的节律性爆发。我们提出,脊髓呼吸神经元的主要功能包括 1)将呼吸模式塑造成来自脊髓呼吸神经的最终传出运动输出;2)协调脊髓神经轴上的呼吸肌激活;3)协调姿势、运动和呼吸运动;4)使呼吸运动输出在健康和疾病中具有可塑性。