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Institution

University of Kentucky

EducationLexington, Kentucky, United States
About: University of Kentucky is a education organization based out in Lexington, Kentucky, United States. It is known for research contribution in the topics: Population & Poison control. The organization has 43933 authors who have published 92195 publications receiving 3256087 citations. The organization is also known as: UK.


Papers
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Journal ArticleDOI
TL;DR: This paper developed hypotheses regarding the influence of four factors: (1) greater opioid prescription in rural areas, creating availability from which illegal markets can arise; (2) an out-migration of young adults; (3) greater rural social and kinship network connections, which may facilitate drug diversion and distribution; and (4) economic stressors that may create vulnerability to drug use more generally.
Abstract: Nonmedical prescription opioid misuse remains a growing public problem in need of action and is concentrated in areas of US states with large rural populations such as Kentucky, West Virginia, Alaska, and Oklahoma. We developed hypotheses regarding the influence of 4 factors: (1) greater opioid prescription in rural areas, creating availability from which illegal markets can arise; (2) an out-migration of young adults; (3) greater rural social and kinship network connections, which may facilitate drug diversion and distribution; and (4) economic stressors that may create vulnerability to drug use more generally. A systematic consideration of the contexts that create differences in availability, access, and preferences is critical to understanding how drug use context varies across geography.

455 citations

Journal ArticleDOI
TL;DR: The ability to modify the surface of carbon nanotubes is of crucial importance for their utilization in different applications as discussed by the authors, and in this paper we report on the chemical modification of multi-w...
Abstract: The ability to modify the surface of carbon nanotubes is of crucial importance for their utilization in different applications. In the present paper we report on the chemical modification of multiw...

455 citations

Journal ArticleDOI
TL;DR: In this article, the authors investigate a three-particle azimuthal correlator which is a P even observable, but directly sensitive to the charge separation effect, and report measurements of charged hadrons near center-of-mass rapidity with this observable in Au+Au and Cu+Cu collisions at s(NN)=200 GeV using the STAR detector.
Abstract: Parity-odd domains, corresponding to nontrivial topological solutions of the QCD vacuum, might be created during relativistic heavy-ion collisions. These domains are predicted to lead to charge separation of quarks along the system's orbital momentum axis. We investigate a three-particle azimuthal correlator which is a P even observable, but directly sensitive to the charge separation effect. We report measurements of charged hadrons near center-of-mass rapidity with this observable in Au+Au and Cu+Cu collisions at s(NN)=200 GeV using the STAR detector. A signal consistent with several expectations from the theory is detected. We discuss possible contributions from other effects that are not related to parity violation.

454 citations

Journal ArticleDOI
TL;DR: The reduction in receptor biosynthesis suggests the capacity for stress to modulate the impact of glucocorticoid on hippocampal cell physiology at the genomic level, potentially influencing processes ranging from cognition to feedback regulation of the HPA axis.
Abstract: Stress represents a complex stimulus to neuroendocrine systems regulating homeostasis. By and large, stress effects are mediated by stress-integrative corticotropin-releasing hormone (CRH) neurons pre

454 citations

Journal ArticleDOI
TL;DR: Copper homeostasis is tightly regulated through a complex system of Cu transporters and chaperone proteins, and altered cellular events, including lipid metabolism, gene expression, alpha-synuclein aggregation, and temporal and spatial distribution of Cu in hepatocytes, have been suggested to play a role in Cu toxicity.
Abstract: Copper (Cu) is a vital mineral essential for many biological processes. The vast majority of all Cu in healthy humans is associated with enzyme prosthetic groups or bound to proteins. Cu homeostasis is tightly regulated through a complex system of Cu transporters and chaperone proteins. Excess or toxicity of Cu, which is associated with the pathogenesis of hepatic disorder, neurodegenerative changes and other disease conditions, can occur when Cu homeostasis is disrupted. The capacity to initiate oxidative damage is most commonly attributed to Cu-induced cellular toxicity. Recently, altered cellular events, including lipid metabolism, gene expression, alpha-synuclein aggregation, activation of acidic sphingomyelinase and release of ceramide, and temporal and spatial distribution of Cu in hepatocytes, as well as Cu-protein interaction in the nerve system, have been suggested to play a role in Cu toxicity. However, whether these changes are independent of, or secondary to, an altered cellular redox state of Cu remain to be elucidated.

454 citations


Authors

Showing all 44305 results

NameH-indexPapersCitations
Mark P. Mattson200980138033
Carlo M. Croce1981135189007
Charles A. Dinarello1901058139668
Richard A. Gibbs172889249708
Gang Chen1673372149819
David A. Bennett1671142109844
Carl W. Cotman165809105323
Rodney S. Ruoff164666194902
David Tilman158340149473
David Cella1561258106402
Richard E. Smalley153494111117
Deepak L. Bhatt1491973114652
Kevin Murphy146728120475
Jian Yang1421818111166
Thomas J. Smith1401775113919
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
2023108
2022532
20214,329
20204,216
20193,965
20183,605