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Items: 1 to 20 of 83

1.

Modeling of the response of ptO2 in rat brain to changes in physiological parameters.

Grinberg OY, Hou H, Roche MA, Merlis J, Grinberg SA, Khan N, Swartz HM, Dunn JF.

Adv Exp Med Biol. 2005;566:111-8.

PMID:
16594142
2.
3.
4.

Effects of a synthetic allosteric modifier of hemoglobin oxygen affinity on outcome from global cerebral ischemia in the rat.

Grocott HP, Bart RD, Sheng H, Miura Y, Steffen R, Pearlstein RD, Warner DS.

Stroke. 1998 Aug;29(8):1650-5.

5.

Effects of the allosteric modification of hemoglobin on brain oxygen and infarct size in a feline model of stroke.

Watson JC, Doppenberg EM, Bullock MR, Zauner A, Rice MR, Abraham D, Young HF.

Stroke. 1997 Aug;28(8):1624-30.

6.

The rationale for, and effects of oxygen delivery enhancement to ischemic brain in a feline model of human stroke.

Doppenberg EM, Watson JC, Bullock R, Gerber MJ, Zauner A, Abraham DJ.

Ann N Y Acad Sci. 1997 Oct 15;825:241-57.

PMID:
9369991
7.

Local tissue oxygen tension-cytochrome a,a3 redox relationships in rat cerebral cortex in vivo.

Kreisman NR, Sick TJ, LaManna JC, Rosenthal M.

Brain Res. 1981 Aug 10;218(1-2):161-74.

PMID:
6268243
8.

Allosteric modification of oxygen delivery by hemoglobin.

Wahr JA, Gerber M, Venitz J, Baliga N.

Anesth Analg. 2001 Mar;92(3):615-20.

PMID:
11226087
9.
10.

Changes in oxygen partial pressure of brain tissue in an animal model of obstructive apnea.

Almendros I, Montserrat JM, Torres M, González C, Navajas D, Farré R.

Respir Res. 2010 Jan 15;11:3. doi: 10.1186/1465-9921-11-3.

11.

RSR13, a synthetic modifier of hemoglobin-oxygen affinity, enhances the recovery of stunned myocardium in anesthetized dogs.

Pagel PS, Hettrick DA, Montgomery MW, Kersten JR, Steffen RP, Warltier DC.

J Pharmacol Exp Ther. 1998 Apr;285(1):1-8.

12.

Myocardial surface PO2--an indicator of myocardial tissue oxygenation?

Hobbhahn J, Conzen PF, Goetz A, Seidl G, Gonschior P, Brendel W, Peter K.

Cardiovasc Res. 1989 Jun;23(6):529-40.

PMID:
2590926
13.

Noninvasive assessment of cerebral oxygenation during acclimation to hypobaric hypoxia.

Dunn JF, Grinberg O, Roche M, Nwaigwe CI, Hou HG, Swartz HM.

J Cereb Blood Flow Metab. 2000 Dec;20(12):1632-5.

PMID:
11129779
14.

Effects of enhanced oxygen release from hemoglobin by RSR13 in an acute renal failure model.

Burke TJ, Malhotra D, Shapiro JI.

Kidney Int. 2001 Oct;60(4):1407-14.

15.

Cerebral PtO2, acute hypoxia, and volatile anesthetics in the rat brain.

Hou H, Grinberg OY, Grinberg SA, Khan N, Dunn JF, Swartz HM.

Adv Exp Med Biol. 2005;566:179-85.

PMID:
16594151
16.

Preservation of canine myocardial high-energy phosphates during low-flow ischemia with modification of hemoglobin-oxygen affinity.

Weiss RG, Mejia MA, Kass DA, DiPaula AF, Becker LC, Gerstenblith G, Chacko VP.

J Clin Invest. 1999 Mar;103(5):739-46.

17.

Human cerebral microcirculation and oxygen saturation during propofol-induced reduction of bispectral index.

Klein KU, Fukui K, Schramm P, Stadie A, Fischer G, Werner C, Oertel J, Engelhard K.

Br J Anaesth. 2011 Nov;107(5):735-41. doi: 10.1093/bja/aer227. Epub 2011 Jul 31.

PMID:
21862494
18.

Cerebral oxygen reactivity in the dog.

Hoffman WE, Edelman G, Wheeler P.

Neurol Res. 2000 Sep;22(6):620-2.

PMID:
11045027
19.

On the oxygenation of hemoglobin in the human brain.

Gjedde A, Poulsen PH, Ostergaard L.

Adv Exp Med Biol. 1999;471:67-81.

PMID:
10659133
20.

Effect of RSR13 on temperature-dependent changes in hemoglobin oxygen affinity of human whole blood.

Steffen RP.

Adv Exp Med Biol. 1998;454:653-61. No abstract available.

PMID:
9889946

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