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Institution

University of Nevada, Reno

EducationReno, Nevada, United States
About: University of Nevada, Reno is a education organization based out in Reno, Nevada, United States. It is known for research contribution in the topics: Population & Poison control. The organization has 13561 authors who have published 28217 publications receiving 882002 citations. The organization is also known as: University of Nevada & Nevada State University.


Papers
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Journal ArticleDOI
TL;DR: The proposed model of BPD is a developmental model that is neither blaming of the family member with BPD nor of her or his parents and caregivers, and has important and specific implications for both prevention and intervention.
Abstract: Although no prospective epidemiological studies have evaluated the relationship between family interactions and the development of borderline personality disorder (BPD), there is considerable evidence for the central role of family interactions in the development of BPD. This paper describes the role of family interactions or processes, especially those that might be regarded as invalidating or conflictual, negative or critical, and the absence of more validating, positive, supportive, empathic interactions, in the development of BPD. Perhaps more importantly, the proposed model considers how these parental and family behaviors transact with the child's own behaviors and emotional vulnerabilities, resulting in a developmental model of BPD that is neither blaming of the family member with BPD nor of her or his parents and caregivers, and has important and specific implications for both prevention and intervention.

251 citations

Journal ArticleDOI
TL;DR: This study shows the DESs to be capable of preferentially dissolving lignin at 60°C, andThermogravimetric analysis show DES to be stable at typical biomass processing temperatures.

251 citations

Journal ArticleDOI
01 May 1997-Nature
TL;DR: In this paper, it was shown that stimulation of sympathetic nerve innervating the guinea-pig vas deferens releases not only neuronal ATP, but also soluble nucleotidases that break down this ATP to adenosine, indicating that inactivation of ATP is increased by nerve activity.
Abstract: Efficient control of synaptic transmission requires a rapid mechanism for terminating the actions of neurotransmitters. For amino acids and monoamines, this is achieved by their uptake into the cell by specific high-affinity transporters; acetylcholine is first broken down in the extracellular space and then choline is taken up by the cell. Because ATP is hydrolysed to adenosine by membrane-bound enzymes (ectonucleotidases) that are present in most tissues, it has been assumed that these enzymes terminate the neurotransmitter actions of ATP in the brain and in the periphery. We show here, however, that stimulation of sympathetic nerves innervating the guinea-pig vas deferens releases not only neuronal ATP, but also soluble nucleotidases that break down this ATP to adenosine, indicating that inactivation of ATP is increased by nerve activity. This release of specific nucleotidases together with ATP represents a new mechanism for terminating the actions of a neurotransmitter.

250 citations

Journal ArticleDOI
26 May 1989-Science
TL;DR: In isolated heart cells, beta-adrenergic receptor stimulation induced a background current that was suppressed by simultaneous muscarinic receptor stimulation, suggesting regulation by adenosine 3',5'-monophosphate (cAMP), and activated the resting membrane potential in a chloride gradient-dependent manner.
Abstract: In isolated heart cells, beta-adrenergic receptor stimulation induced a background current that was suppressed by simultaneous muscarinic receptor stimulation. Direct activation of adenylate cyclase with forskolin also elicited this current, suggesting regulation by adenosine 3',5'-monophosphate (cAMP). This current could be recorded when sodium, calcium, and potassium currents were eliminated by channel antagonists or by ion substitution. Alteration of the chloride equilibrium potential produced changes in the reversal potential expected for a chloride current. Activation of this chloride current modulated action potential duration and altered the resting membrane potential in a chloride gradient-dependent manner.

250 citations

Journal ArticleDOI
TL;DR: Patch-clamp experiments demonstrated that ICC are excitable; voltage-dependent inward and outward currents were elicited by depolarization, and these findings are consistent with the hypothesis that ICC initiate rhythmicity in the colon.
Abstract: Interstitial cells of Cajal (ICC) have been suggested as pacemaker cells in the gastrointestinal tract. A method was developed to isolate ICC from the slow-wave pacemaker region of the canine proximal colon. These cells were identified under phase-contrast microscopy, and their identity was verified by comparing their ultrastructure with the morphology of ICC in situ. Patch-clamp experiments demonstrated that these cells are excitable; voltage-dependent inward and outward currents were elicited by depolarization. Inward current transients were identified as calcium currents. A portion of the outward current appears to be due to Ca2+-activated K channels commonly expressed in these cells. ICC were also spontaneously active, generating electrical depolarizations similar in waveform to slow-wave events of intact colonic muscles. These findings are consistent with the hypothesis that ICC initiate rhythmicity in the colon.

248 citations


Authors

Showing all 13726 results

NameH-indexPapersCitations
Robert Langer2812324326306
Thomas C. Südhof191653118007
David W. Johnson1602714140778
Menachem Elimelech15754795285
Jeffrey L. Cummings148833116067
Bing Zhang121119456980
Arturo Casadevall12098055001
Mark H. Ellisman11763755289
Thomas G. Ksiazek11339846108
Anthony G. Fane11256540904
Leonardo M. Fabbri10956660838
Gary H. Lyman10869452469
Steven C. Hayes10645051556
Stephen P. Long10338446119
Gary Cutter10373740507
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202368
2022222
20211,756
20201,743
20191,514
20181,397