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Enhancement of brain pO
2
during cardiopulmonary bypass using a hyperosmolar oxygen carrying solution
T. M. Runge
, J. W. McGinity
, S. E. Frisbee
, J. C. Briceno
, S. E. Ottmers
,
J. H. Calhoon
, C. B. Hantler
, D. L. Korvick
, J. R. Ybarra
Department of Cardiothoracic Surgery
Research output
:
Contribution to journal
›
Article
›
peer-review
4
Scopus citations
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2
during cardiopulmonary bypass using a hyperosmolar oxygen carrying solution'. Together they form a unique fingerprint.
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Medicine and Dentistry
Cardiopulmonary Bypass
100%
Oxygen
75%
Carbohydrate
75%
Hypoxia
50%
Interstitial Fluid
50%
Syndrome
50%
Brain
50%
Patient
50%
Protein
25%
Bypass
25%
Edema
25%
Diuresis
25%
Fluorocarbon
25%
Memory
25%
Colloid
25%
Heart Surgery
25%
Brain Hypoxia
25%
Blood Substitute
25%
Age
25%
Perfluoro Compound
25%
Anasarca
25%
Cell Saver
25%
Pump
25%
Incidence
25%
Aptitude
25%
Inpatient
25%
Water
25%
Biochemistry, Genetics and Molecular Biology
Saccharide
75%
Solution and Solubility
75%
Crystalloid
50%
Brain Oxygen Tension
50%
Liquid
50%
Memory
25%
Diuresis
25%
Age
25%
Oncotic Pressure
25%
Energy
25%
Protein
25%
Incidence
25%
Aptitude
25%