Sung W. Rhee, Ph.D.

Affiliations: 
2003 University of Washington, Seattle, Seattle, WA 
Area:
Condensed Matter Physics, Fluid and Plasma Physics
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"Sung Rhee"
Mean distance: 5420.8
 

Parents

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David J. Thouless grad student 2003 University of Washington
 (Corrections to the transverse force for superfluid vortices.)
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Publications

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Rhee SW, Rusch NJ. (2017) Molecular Determinants of Beta-adrenergic Signaling to Voltage-gated K(+) Channels in the Cerebral Circulation. Microcirculation (New York, N.Y. : 1994)
Detweiler ND, Song L, McClenahan SJ, et al. (2016) BK channels in rat and human pulmonary smooth muscle cells are BKα-β1 functional complexes lacking the oxygen-sensitive stress axis regulated exon insert. Pulmonary Circulation. 6: 563-575
Stimers JR, Song L, Rusch NJ, et al. (2015) Overexpression of the Large-Conductance, Ca2+-Activated K+ (BK) Channel Shortens Action Potential Duration in HL-1 Cardiomyocytes. Plos One. 10: e0130588
Moore CL, McClenahan SJ, Hanvey HM, et al. (2015) Beta1-adrenergic receptor-mediated dilation of rat cerebral artery requires Shaker-type KV1 channels on PSD95 scaffold. Journal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism
Moore CL, Nelson PL, Parelkar NK, et al. (2014) Protein kinase A-phosphorylated KV1 channels in PSD95 signaling complex contribute to the resting membrane potential and diameter of cerebral arteries. Circulation Research. 114: 1258-67
Joseph BK, Thakali KM, Moore CL, et al. (2013) Ion channel remodeling in vascular smooth muscle during hypertension: Implications for novel therapeutic approaches. Pharmacological Research. 70: 126-38
Kharade SV, Sonkusare SK, Srivastava AK, et al. (2013) The β3 subunit contributes to vascular calcium channel upregulation and hypertension in angiotensin II-infused C57BL/6 mice. Hypertension. 61: 137-42
Joseph BK, Thakali KM, Pathan AR, et al. (2011) Postsynaptic density-95 scaffolding of Shaker-type K⁺ channels in smooth muscle cells regulates the diameter of cerebral arteries. The Journal of Physiology. 589: 5143-52
Thakali KM, Kharade SV, Sonkusare SK, et al. (2010) Intracellular Ca2+ silences L-type Ca2+ channels in mesenteric veins: mechanism of venous smooth muscle resistance to calcium channel blockers. Circulation Research. 106: 739-47
Wang W, Rhee SW, Mehta JL, et al. (2010) Vascular Cav1.2 Expression is Increased in Atherosclerosis Biophysical Journal. 98
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