Joseph A. Beatty
Affiliations: | Michigan State University, East Lansing, MI |
Area:
NeurophysiologyGoogle:
"Joseph Beatty"Mean distance: 13.47 (cluster 17) | S | N | B | C | P |
Parents
Sign in to add mentorCharles L. Cox | grad student | 2002-2006 | UIUC | |
(Intrinsic properties and neuromodulator regulation of neuronal excitability of intralaminar thalamic neurons.) | ||||
Charles Wilson | post-doc | 2009- | UT San Antonio | |
S Murray Sherman | post-doc | 2006-2009 | Chicago |
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Publications
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Eagle AL, Williams ES, Beatty JA, et al. (2018) ΔFosB Decreases Excitability of Dorsal Hippocampal CA1 Neurons. Eneuro. 5 |
Cox CL, Beatty JA. (2017) The multifaceted role of inhibitory interneurons in the dorsal lateral geniculate nucleus. Visual Neuroscience. 34: E017 |
Song SC, Beatty JA, Wilson CJ. (2016) The Ionic Mechanism of Membrane Potential Oscillations and Membrane Resonance in Striatal LTS Interneurons. Journal of Neurophysiology. jn.00511.2016 |
Beatty JA, Song SC, Wilson CJ. (2015) Cell-type-specific resonances shape the responses of striatal neurons to synaptic input. Journal of Neurophysiology. 113: 688-700 |
Beatty JA, Sullivan MA, Morikawa H, et al. (2012) Complex autonomous firing patterns of striatal low-threshold spike interneurons. Journal of Neurophysiology. 108: 771-81 |
Beatty JA, Sylwestrak EL, Cox CL. (2009) Two distinct populations of projection neurons in the rat lateral parafascicular thalamic nucleus and their cholinergic responsiveness. Neuroscience. 162: 155-73 |
Beatty JA, Kramer JM, Plowey ED, et al. (2005) Physical exercise decreases neuronal activity in the posterior hypothalamic area of spontaneously hypertensive rats. Journal of Applied Physiology (Bethesda, Md. : 1985). 98: 572-8 |
Plowey ED, Kramer JM, Beatty JA, et al. (2002) In vivo electrophysiological responses of pedunculopontine neurons to static muscle contraction. American Journal of Physiology. Regulatory, Integrative and Comparative Physiology. 283: R1008-19 |
Kramer JM, Beatty JA, Plowey ED, et al. (2002) Exercise and hypertension: a model for central neural plasticity. Clinical and Experimental Pharmacology & Physiology. 29: 122-6 |
Little HR, Kramer JM, Beatty JA, et al. (2001) Chronic exercise increases GAD gene expression in the caudal hypothalamus of spontaneously hypertensive rats. Brain Research. Molecular Brain Research. 95: 48-54 |