Xiaobing Zhang
Affiliations: | 2003-2008 | Florida State University, Tallahassee, FL, United States |
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Publications
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van den Pol AN, Acuna C, Davis JN, et al. (2019) Defining the caudal hypothalamic arcuate nucleus with a focus on anorexic excitatory neurons. The Journal of Physiology |
Zhang X, van den Pol AN. (2017) Rapid binge-like eating and body weight gain driven by zona incerta GABA neuron activation. Science (New York, N.Y.). 356: 853-859 |
Zhang X, van den Pol AN. (2016) Hypothalamic arcuate nucleus tyrosine hydroxylase neurons play orexigenic role in energy homeostasis. Nature Neuroscience |
Zhang X, van den Pol AN. (2015) Dopamine/Tyrosine Hydroxylase Neurons of the Hypothalamic Arcuate Nucleus Release GABA, Communicate with Dopaminergic and Other Arcuate Neurons, and Respond to Dynorphin, Met-Enkephalin, and Oxytocin. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 35: 14966-82 |
Zhang X, van den Pol AN. (2013) Direct inhibition of arcuate proopiomelanocortin neurons: a potential mechanism for the orexigenic actions of dynorphin. The Journal of Physiology. 591: 1731-47 |
Huang C, Li WG, Zhang XB, et al. (2013) α-asarone from Acorus gramineus alleviates epilepsy by modulating A-type GABA receptors. Neuropharmacology. 65: 1-11 |
Zhang X, van den Pol AN. (2012) Thyrotropin-releasing hormone (TRH) inhibits melanin-concentrating hormone neurons: implications for TRH-mediated anorexic and arousal actions. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 32: 3032-43 |
Zhang X, Spergel DJ. (2012) Kisspeptin inhibits high-voltage activated Ca2+ channels in GnRH neurons via multiple Ca2+ influx and release pathways. Neuroendocrinology. 96: 68-80 |
Yao Y, Fu LY, Zhang X, et al. (2012) Vasopressin and oxytocin excite MCH neurons, but not other lateral hypothalamic GABA neurons. American Journal of Physiology. Regulatory, Integrative and Comparative Physiology. 302: R815-24 |
Jiang P, Kong Y, Zhang XB, et al. (2009) Glycine receptor in rat hippocampal and spinal cord neurons as a molecular target for rapid actions of 17-beta-estradiol. Molecular Pain. 5: 2 |