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Molecular and Cellular Endocrinology|February 19, 2002
17beta-Estradiol release in the parabrachial nucleus of the rat evoked by visceral afferent activationTarek M Saleh, Monique C Saleh, Christa L Deacon, et al.
Journal of Stroke and Cerebrovascular Diseases : the Official Journal of National Stroke Association|October 2, 2007
Stroke-induced changes in estrogen release and neuronal activity in the parabrachial nucleus of the male ratTarek M Saleh, Barry J Connell, Carolyn Legge, et al.
Brain Research|July 21, 2004
Estrogen attenuates neuronal excitability in the insular cortex following middle cerebral artery occlusionTarek M Saleh, Barry J Connell, Carolyn Legge, et al.
Brain Research|October 22, 2003
Estrogen-induced neurochemical and electrophysiological changes in the parabrachial nucleus of the male ratTarek M Saleh, Barry J Connell, Tim McQuaid, et al.
Brain Research|December 22, 2010
Lipoic acid protects against reperfusion injury in the early stages of cerebral ischemiaBarry J Connell, Monique Saleh, Bobby V Khan, et al.
Cardiology Research and Practice|January 21, 2012
Novel Neurovascular Protective Agents: Effects of INV-155, INV-157, INV-159, and INV-161 versus Lipoic Acid and Captopril in a Rat Stroke ModelBarry J Connell, Bobby V Khan, Desikan Rajagopal, et al.
Clinical and Experimental Pharmacology & Physiology|June 22, 2017
A co-drug conjugate of naringenin and lipoic acid mediates neuroprotection in a rat model of oxidative stressTarek M Saleh, Monique C Saleh, Barry J Connell, et al.
Food and Chemical Toxicology : an International Journal Published for the British Industrial Biological Research Association|September 28, 2011
Apocynin may limit total cell death following cerebral ischemia and reperfusion by enhancing apoptosisBarry J Connell, Monique C Saleh, Bobby V Khan, et al.
Neuroscience Research|December 28, 2010
Cellular mechanisms by which lipoic acid confers protection during the early stages of cerebral ischemia: a possible role for calciumMarc J P Richard, Barry J Connell, Bobby V Khan, et al.
The European Journal of Neuroscience|April 24, 2009
Substance P and cocaine employ convergent mechanisms to depress excitatory synaptic transmission in the rat nucleus accumbens in vitroSamuel B Kombian, Kethireddy V V Ananthalakshmi, Jeffrey A Zidichouski, et al.
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