Showing results (1-10 of 24) with videos related to
Sort By:
Pageof 3
Neurobiology of Learning and Memory|March 31, 2011
The role of the insular cortex in taste functionJimmy Stehberg, Rodrigo Moraga-Amaro, Felipe SimonBehavioural Brain Research|August 12, 2014
Dopamine receptor D3 deficiency results in chronic depression and anxietyRodrigo Moraga-Amaro, Hugo Gonzalez, Rodrigo Pacheco, et al.Neurobiology of Learning and Memory|December 4, 2013
Role of the insular cortex in taste familiarityRodrigo Moraga-Amaro, Andrés Cortés-Rojas, Felipe Simon, et al.Frontiers in Integrative Neuroscience|August 5, 2016
Role of Astroglial Hemichannels and Pannexons in Memory and Neurodegenerative DiseasesJuan A Orellana, Mauricio A Retamal, Rodrigo Moraga-Amaro, et al.Frontiers in Molecular Neuroscience|February 13, 2025
Short- and long-term changes in neurological, behavioural, and blood biomarkers following repeated mild traumatic brain injury in rats-potential biological sex-dependent effectsRodrigo Moraga-Amaro, Oscar Moreno, Jordi Llop, et al.Experimental Neurology|November 16, 2025
Biomarkers for prediction of chronic traumatic encephalopathy-like pathology following repeated mild traumatic brain injury in rats are partially sex- and age-dependentRodrigo Moraga-Amaro, Oscar Moreno, Jordi Llop, et al.Frontiers in Behavioral Neuroscience|July 16, 2015
The insula modulates arousal-induced reluctance to try novel tastes through adrenergic transmission in the ratSebastián Rojas, Raúl Diaz-Galarce, Juan Manuel Jerez-Baraona, et al.Psychiatry Research|December 31, 2022
Real-world data of non-invasive stimulation of the human insula-prefrontal cortices using deep TMS to treat anxiety for occupational stress and generalized anxiety disorderRodrigo Moraga-Amaro, Paula Muñoz, Tomás Villalobos, et al.Frontiers in Neurology|November 19, 2015
Retrospective Evaluation of Deep Transcranial Magnetic Stimulation as Add-On Treatment for Parkinson's DiseaseFrancisco Torres, Esteban Villalon, Patricio Poblete, et al.Frontiers in Cellular Neuroscience|April 18, 2015
Restraint stress increases hemichannel activity in hippocampal glial cells and neuronsJuan A Orellana, Rodrigo Moraga-Amaro, Raúl Díaz-Galarce, et al.Pageof 3