Does the midbrain dorsolateral periaqueductal grey have direct connections with the pontine A5 region? A neuropharmacologic and electrophysiological study

Loading...
Thumbnail Image

Files

ABSTRACT DEFINITIVO.pdf (44.86 KB)

Description: COMUNICACIÓN POSTER FENS BERLIN 2018

Identifiers

Publication date

Reading date

Collaborators

Advisors

Tutors

Editors

Journal Title

Journal ISSN

Volume Title

Publisher

Metrics

Google Scholar

Share

Research Projects

Organizational Units

Journal Issue

Abstract

This study has been performed in spontaneously breathing anesthetised rats. We have analysed the possible interactions between the midbrain dorsolateral periaqueductal grey matter (dlPAG) and the pontine A5 region. Electrical stimulations of the dlPAG (1 ms pulses, 20-30 μA given at 100 Hz for 5s) were elicited and the evoked cardiorespiratory changes were analysed before and after ipsilateral blockade of the neurotransmission within the A5 region by means of microinjections of muscimol (50 nl, 0.25 nmol, 5s). Electrical stimulations evoked the classical “defence response” characterized by tachipnoea, hypertension and tachycardia. Tachipnoea consisted of an inspiratory facilitatory response [increase in respiratory rate (p<0.001) due to a decrease in expiratory time (p<0.01)] and was accompanied by a pressor (p<0.001) and tachycardic (p<0.001) response. Muscimol microinjected within the A5 region reduced pressor (p<0.05), tachycardic (p<0.001) and tachypnoeic (p<0.001) responses evoked to dlPAG electrical stimulations. Finally, in order to assess functional interactions between A5 and dlPAG, extracellular recordings of 40 putative A5 cells during dlPAG electrical stimulation were recorded. 16 cells were affected by dlPAG stimulation (40%). 3 cells showed orthodromic activation (14.2 ± 1.7 ms). 5 cells were excited (10.1 ± 1.6 ms). 7 cells decreased spontaneous activity to dlPAG stimulation. 24 cells were not modified by dlPAG stimulation (2 presented a respiratory pattern and 1 presented a cardiovascular pattern). These results contribute with new data on the role of the A5 region neurones in the modulation of the cardiorespiratory response evoked on dlPAG stimulation.

Description

Bibliographic citation

Endorsement

Review

Supplemented By

Referenced by