4.7 Article

Intermittent Hypoxia Enhances Functional Connectivity of Midcervical Spinal Interneurons

期刊

JOURNAL OF NEUROSCIENCE
卷 37, 期 35, 页码 8349-8362

出版社

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.0992-17.2017

关键词

hypoxia; interneurons; network plasticity; neuroplasticity; respiratory; spinal cord

资金

  1. National Institute of Health [1RO1NS080180-01A1, 1F32NS095620-01, T32-ND043730]
  2. Department of Defense [W81XWH-14-1-0625]

向作者/读者索取更多资源

Brief, intermittent oxygen reductions [acute intermittent hypoxia (AIH)] evokes spinal plasticity. Models of AIH-induced neuroplasticity have focused on motoneurons; however, most midcervical interneurons (C-INs) also respond to hypoxia. We hypothesized that AIH would alter the functional connectivity between C-INs and induce persistent changes in discharge. Bilateral phrenic nerve activity was recorded in anesthetized and ventilated adult male rats and a multielectrode array was used to record C4/5 spinal discharge before [baseline (BL)], during, and 15 min after three 5 min hypoxic episodes (11% O-2, H1-H3). Most C-INs (94%) responded to hypoxia by either increasing or decreasing firing rate. Functional connectivity was examined by cross-correlating C-IN discharge. Correlograms with a peak or trough were taken as evidence for excitatory or inhibitory connectivity between C-IN pairs. Asubset of C-IN pairs had increased excitatory cross-correlations during hypoxic episodes (34%) compared with BL (19%; p < 0.0001). Another subset had a similar response following each episode (40%) compared with BL (19%; p < 0.0001). In the latter group, connectivity remained elevated 15 min post-AIH (30%; p < 0.0002). Inhibitory C-IN connectivity increased duringH1-H3(4.5%; p = 0.0160), but was reduced 15 min post-AIH (0.5%; p = 0.0439). Spike-triggered averaging indicated that a subset of C-INs is synaptically coupled to phrenic motoneurons and excitatory inputs to these pre-phrenic cells increased during AIH. We conclude that AIH alters connectivity of the midcervical spinal network. To our knowledge, this is the first demonstration that AIH induces plasticity within the propriospinal network.

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