Absence of synergy for monosynaptic Group I inputs between abdominal and internal intercostal motoneurons

T W Ford1, C F Meehan2, P A Kirkwood3

  • 1University of Nottingham School of Health Sciences, Queen's Medical Centre, Nottingham, United Kingdom; and.

Insights

Synergistic activation of expiratory muscles lacks direct Group I reflex connections. This suggests muscle spindle afferents from thoracic nerves play a minimal role in controlling expiratory movements.

Area of Science:

  • Neuroscience
  • Motor Control
  • Respiratory Physiology

Background:

  • Internal intercostal and abdominal muscles are coactivated during expiration.
  • The role of Group I reflex excitation in this synergistic activation is unclear.

Purpose of the Study:

  • To investigate synergistic Group I reflex excitation between internal intercostal and abdominal motoneurons.
  • To determine the specificity of monosynaptic connections from afferents in different nerve branches.

Main Methods:

  • Intracellular recordings from T8 internal intercostal motoneurons in anesthetized cats.
  • Antidromic excitation to identify motoneuron innervation of external abdominal oblique (EO), proximal internal intercostal (IIm), and distal (Dist) muscles.
  • Investigation of excitatory postsynaptic potentials (EPSPs) from different nerve branches.

Main Results:

  • High specificity of monosynaptic connections observed; only 2 of 54 motoneurons received input from both lateral (Lat) and distal (Dist) branches.
  • No EO motoneurons showed EPSPs from Dist, and no IIm motoneurons showed EPSPs from Lat.
  • Expiratory Dist motoneurons were divided into two groups based on EPSPs from Dist or Lat, suggesting innervation of different muscle regions.

Conclusions:

  • The absence of heteronymous monosynaptic Group I reflex excitation between synergistically activated expiratory muscles indicates a limited role in expiratory control.
  • Where present, these connections may support other motor acts rather than expiratory synergy.

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