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Items: 14

1.

Lipidomic profiling of targeted oxylipins with ultra-performance liquid chromatography-tandem mass spectrometry.

Yuan ZX, Majchrzak-Hong S, Keyes GS, Iadarola MJ, Mannes AJ, Ramsden CE.

Anal Bioanal Chem. 2018 Sep;410(23):6009-6029. doi: 10.1007/s00216-018-1222-4. Epub 2018 Aug 3.

PMID:
30074088
2.

Effects of diets enriched in linoleic acid and its peroxidation products on brain fatty acids, oxylipins, and aldehydes in mice.

Ramsden CE, Hennebelle M, Schuster S, Keyes GS, Johnson CD, Kirpich IA, Dahlen JE, Horowitz MS, Zamora D, Feldstein AE, McClain CJ, Muhlhausler BS, Makrides M, Gibson RA, Taha AY.

Biochim Biophys Acta. 2018 Jul 25;1863(10):1206-1213. doi: 10.1016/j.bbalip.2018.07.007. [Epub ahead of print]

PMID:
30053599
3.

Structural insights into Resolvin D4 actions and further metabolites via a new total organic synthesis and validation.

Winkler JW, Libreros S, De La Rosa X, Sansbury BE, Norris PC, Chiang N, Fichtner D, Keyes GS, Wourms N, Spite M, Serhan CN.

J Leukoc Biol. 2018 Jan 29. doi: 10.1002/JLB.3MI0617-254R. [Epub ahead of print]

PMID:
29377345
4.

A dose response study of the effect of prostaglandin E2 on thermal nociceptive sensitivity.

Domenichiello AF, Wilhite BC, Keyes GS, Ramsden CE.

Prostaglandins Leukot Essent Fatty Acids. 2017 Nov;126:20-24. doi: 10.1016/j.plefa.2017.08.015. Epub 2017 Aug 31.

PMID:
29031391
5.

A systems approach for discovering linoleic acid derivatives that potentially mediate pain and itch.

Ramsden CE, Domenichiello AF, Yuan ZX, Sapio MR, Keyes GS, Mishra SK, Gross JR, Majchrzak-Hong S, Zamora D, Horowitz MS, Davis JM, Sorokin AV, Dey A, LaPaglia DM, Wheeler JJ, Vasko MR, Mehta NN, Mannes AJ, Iadarola MJ.

Sci Signal. 2017 Aug 22;10(493). pii: eaal5241. doi: 10.1126/scisignal.aal5241.

6.

Resolvin D3 multi-level proresolving actions are host protective during infection.

Norris PC, Arnardottir H, Sanger JM, Fichtner D, Keyes GS, Serhan CN.

Prostaglandins Leukot Essent Fatty Acids. 2016 Jan 22. pii: S0952-3278(15)30052-1. doi: 10.1016/j.plefa.2016.01.001. [Epub ahead of print]

7.

A major glucuronidated metabolite of JWH-018 is a neutral antagonist at CB1 receptors.

Seely KA, Brents LK, Radominska-Pandya A, Endres GW, Keyes GS, Moran JH, Prather PL.

Chem Res Toxicol. 2012 Apr 16;25(4):825-7. doi: 10.1021/tx3000472. Epub 2012 Mar 15.

8.

Hybrid intravenous digital subtraction angiography of the carotid bifurcation.

Burbank FH, Enzmann D, Keyes GS, Brody WR.

Radiology. 1984 Sep;152(3):725-9.

PMID:
6379746
9.

Work in progress: temporal energy hybrid subtraction in intravenous digital subtraction angiography.

Foley WD, Keyes GS, Smith DF, Belanger B, Sieb LE, Lawson TL, Thorsen MK, Stewart ET.

Radiology. 1983 Jul;148(1):265-71.

PMID:
6856848
10.

Evaluation of peripheral vascular disease using digital subtraction angiography.

Guthaner DF, Wexler L, Enzmann DR, Riederer SJ, Keyes GS, Collins WF, Brody WR.

Radiology. 1983 May;147(2):393-8.

PMID:
6340157
11.

Low-dose, high-frame-rate versus regular-dose, low-frame-rate digital subtraction angiography.

Enzmann DR, Djang WT, Riederer SJ, Collins WF, Hall A, Keyes GS, Brody WR.

Radiology. 1983 Mar;146(3):669-76.

PMID:
6338556
12.

Clinical application of hybrid subtraction digital angiography: preliminary results.

Guthaner DF, Brody WR, Lewis BD, Keyes GS, Belanger BF.

Cardiovasc Intervent Radiol. 1983;6(4-6):290-4.

PMID:
6360370
13.

Intravenous arteriography using digital subtraction techniques.

Brody WR, Enzmann DR, Miller DC, Guthaner DF, Pelc NJ, Keyes GS, Riederer SJ.

JAMA. 1982 Aug 13;248(6):671-4.

PMID:
7047776
14.

The effect of varying spatial resolution on the detectability of diffuse pulmonary nodules. Assessment with digitized conventional radiographs.

Foley WD, Wilson CR, Keyes GS, DiBianca FA, Scanlon GT, Schleuter D, Lawson TL.

Radiology. 1981 Oct;141(1):25-31.

PMID:
7291538

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