Open Access. Powered by Scholars. Published by Universities.®
Articles 1 - 2 of 2
Full-Text Articles in Entire DC Network
Nicotine Receptors Mediating Sensorimotor Gating And Its Enhancement By Systemic Nicotine, Farena Pinnock, Daniel Bosch, Tyler Brown, Nadine Simons, John R. Yeomans, Cleusa Deoliveira, Susanne Schmid
Nicotine Receptors Mediating Sensorimotor Gating And Its Enhancement By Systemic Nicotine, Farena Pinnock, Daniel Bosch, Tyler Brown, Nadine Simons, John R. Yeomans, Cleusa Deoliveira, Susanne Schmid
Anatomy and Cell Biology Publications
Prepulse inhibition (PPI) of startle occurs when intensity stimuli precede stronger startle-inducing stimuli by 10–1000 ms. PPI deficits are found in individuals with schizophrenia and other psychiatric disorders, and they correlate with other cognitive impairments. Animal research and clinical studies have demonstrated that both PPI and cognitive function can be enhanced by nicotine. PPI has been shown to be mediated, at least in part, by mesopontine cholinergic neurons that project to pontine startle neurons and activate muscarinic and potentially nicotine receptors (nAChRs). The subtypes and anatomical location of nAChRs involved in mediating and modulating PPI remain unresolved. We tested the …
Activation Of Mglur2/3 Receptors In The Ventral Prefrontal Cortex Reverses Sensorimotor Gating Deficits Induced By A Systemic Nmda Receptor Antagonist, Bridget Valsamis, Michael Chang, Marei Typlt, Susanne Schmid
Activation Of Mglur2/3 Receptors In The Ventral Prefrontal Cortex Reverses Sensorimotor Gating Deficits Induced By A Systemic Nmda Receptor Antagonist, Bridget Valsamis, Michael Chang, Marei Typlt, Susanne Schmid
Anatomy and Cell Biology Publications
Prepulse inhibition (PPI) of acoustic startle is an operational measure of sensorimotor gating, which is disrupted in schizophrenia. NMDA receptor (NMDAR) antagonist induced PPI disruption has become an important pharmacological model for schizophrenia; however, knowledge of the underlying mechanism remains incomplete. This study examines the role of NMDAR in the caudal pontine reticular nucleus (PnC) and the medial prefrontal cortex (mPFC) in NMDARs antagonist induced PPI deficits, as well as the NMDA receptor subtypes involved. We administered the NMDA antagonist MK-801 locally into the caudal pontine reticular formation (PnC), where the PPI mediating pathway converges with the primary startle pathway, …