University of Florida, College of Public Health and Health Professions, McKnight Brain Institute, Department of Physical Therapy, PO Box 100154, 100 S. Newell Dr, Gainesville, FL 32610, United States.
Respir Physiol Neurobiol. 2011 Oct 15;179(1):71-9. doi: 10.1016/j.resp.2011.02.014. Epub 2011 Mar 3.
Phrenic motoneurons (PMNs) provide a synaptic relay between bulbospinal respiratory pathways and the diaphragm muscle. PMNs also receive propriospinal inputs, although the functional role of these interneuronal projections has not been established. Here we review the literature regarding PMN discharge patterns during breathing and the potential mechanisms that underlie PMN recruitment. Anatomical and neurophysiological studies indicate that PMNs form a heterogeneous pool, with respiratory-related PMN discharge and recruitment patterns likely determined by a balance between intrinsic MN properties and extrinsic synaptic inputs. We also review the limited literature regarding PMN bursting during respiratory plasticity. Differential recruitment or rate modulation of PMN subtypes may underlie phrenic motor plasticity following neural injury and/or respiratory stimulation; however, this possibility remains relatively unexplored.
膈神经运动神经元 (PMNs) 在球脊呼吸通路和膈肌之间提供了一个突触中继。PMNs 也接收本体感受传入,但这些中间神经元投射的功能作用尚未确定。本文综述了 PMN 在呼吸过程中的放电模式以及潜在的 PMN 募集机制的相关文献。解剖学和神经生理学研究表明,PMNs 形成一个异质池,呼吸相关的 PMN 放电和募集模式可能取决于内在 MN 特性和外在突触输入之间的平衡。我们还综述了关于呼吸可塑性期间 PMN 爆发的有限文献。PMN 亚型的差异募集或频率调制可能是神经损伤和/或呼吸刺激后膈神经运动可塑性的基础;然而,这种可能性仍相对未知。