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    <richText>&lt;b&gt;Fiacco Lab &lt;/b&gt;</richText>
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    <richText>Fiacco</richText>
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    <richText>&#xD;	&#x2022;	Fiacco TA, Agulhon C, McCarthy KD. Sorting out astrocyte physiology from pharmacology. &lt;i&gt;Annu Rev Pharmacol Toxicol&lt;/i&gt;. 49: 151-74, 2009.&#xD;	&#x2022;	Agulhon C, Petravicz J, McMullen AB, Sweger EJ, Minton SK, Taves SR, Casper KB, Fiacco TA, McCarthy KD. What Is the Role of Astrocyte Calcium in Neurophysiology? &lt;i&gt;Neuron&lt;/i&gt; 59(6): 932-946, 2008.&#xD;	&#x2022;	Fiacco TA, Agulhon C. Advances in understanding new roles for astrocytes in the modulation of neuronal activity. &lt;i&gt;Physiology News&lt;/i&gt; 72: 18-20, 2008.&#xD;	&#x2022;	Fiacco TA, Casper K, Agulhon C, Sweger E, Taves S, Minton S, McCarthy KD. Molecular approaches for studying astrocytes. In: &lt;i&gt;Astrocytes in (patho)Physiology of the Nervous System&lt;/i&gt;, Springer ( Boston , MA ); Edited by Vladimir Parpura and Phil Haydon, pp. 383-406, 2008.&#xD;	&#x2022;	Petravicz J, Fiacco TA, McCarthy KD. Loss of IP3 receptor-dependent Ca2+ increases in hippocampal astrocytes does not affect baseline CA1 pyramidal neuron synaptic activity. &lt;i&gt;Journal of Neuroscience&lt;/i&gt; 28(19):4967-73, 2008.&#xD;	&#x2022;	Djukic B, Fiacco TA, McCarthy KD. Astrocyte signaling systems in physiology and pathology. In: &lt;i&gt;Immune and Glial Regulation of Pain&lt;/i&gt;, edited by Joyce A. DeLeo, Linda S. Sorkin, and Linda R. Watkins, IASP Press, Seattle, pp.229-247, 2007.&#xD;	&#x2022;	Fiacco TA, Agulhon C, Taves S, Petravicz J, Casper K, Dong Xinzhong, Chen J, McCarthy KD. Selective stimulation of astrocyte calcium &lt;i&gt;in situ&lt;/i&gt; does not affect neuronal excitatory synaptic activity. &lt;i&gt;Neuron&lt;/i&gt; 54:611-626, 2007.&#xD;	&#x2022;	Fiacco TA, McCarthy KD. Astrocyte calcium elevations: Properties, propagation, and effects on brain signaling. &lt;i&gt;Glia&lt;/i&gt; 54(7):676-690, 2006.&#xD;	&#x2022;	Fiacco TA, McCarthy KD. Intracellular astrocyte calcium waves in situ increase the frequency of spontaneous AMPA receptor currents in CA1 pyramidal neurons. &lt;i&gt;Journal of Neuroscience&lt;/i&gt; 24:722-732, 2004.&#xD;	&#x2022;	Fiacco TA, Rosene DL, Galler JR, Blatt GJ. Increased density of hippocampal kainate receptors but normal density of NMDA and AMPA receptors in a rat model of prenatal protein malnutrition. &lt;i&gt;Journal of Comparative Neurology&lt;/i&gt; 456:350-360, 2003.&#xD;	&#x2022;	Tonkiss J, Shultz P, Shumsky JS, Fiacco TA, Vincitore M, Rosene DL, and JR Galler. Chlordiazepoxide-induced spatial learning deficits: dose-dependent differences following prenatal malnutrition. &lt;i&gt;Pharmacology, Biochemistry, and Behavior&lt;/i&gt; 65(1):105, 1999.</richText>
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    <richText>&lt;b&gt;Recent Publications&lt;/b&gt;</richText>
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