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Analytical Biochemistry
|
January 1, 1985
Determination of intact-tissue glycerophosphorylcholine levels by quantitative 31P nuclear magnetic resonance spectroscopy and correlation with spectrophotometric quantification
J J Billadello, J K Gard, J J Ackerman, et al.
Magnetic Resonance in Medicine
|
July 11, 1998
Evaluation of extra- and intracellular apparent diffusion in normal and globally ischemic rat brain via 19F NMR
T Q Duong, J J Ackerman, H S Ying, et al.
Magnetic Resonance in Medicine
|
May 1, 1992
Concurrent quantification of tissue metabolism and blood flow via 2H/31P NMR in vivo. III. Alterations of muscle blood flow and metabolism during sepsis
S K Song, R S Hotchkiss, I E Karl, et al.
Journal of Neurochemistry
|
June 1, 1999
Sepsis increases intracellular free calcium in brain
S A Anderson, S K Song, J J Ackerman, et al.
The Journal of Physiology
|
January 1, 1981
The role of intrarenal pH in regulation of ammoniagenesis: [31P]NMR studies of the isolated perfused rat kidney
J J Ackerman, M Lowry, G K Radda, et al.
The American Journal of Physiology
|
May 1, 1997
Quantification of ion transport in perfused rat heart: 133Cs+ as an NMR active K+ analog
P A Schornack, S K Song, C S Ling, et al.
Magnetic Resonance in Medicine
|
November 1, 1996
The NMR chemical shift pH measurement revisited: analysis of error and modeling of a pH dependent reference
J J Ackerman, G E Soto, W M Spees, et al.
Cancer Research
|
June 15, 1991
Modulation of murine radiation-induced fibrosarcoma-1 tumor metabolism and blood flow in situ via glucose and mannitol administration monitored by 31P and 2H nuclear magnetic resonance spectroscopy
Y C Hwang, S G Kim, J L Evelhoch, et al.
Science (New York, N.Y.)
|
June 14, 1985
Monitoring the time course of cerebral deoxyglucose metabolism by 31P nuclear magnetic resonance spectroscopy
R K Deuel, G M Yue, W R Sherman, et al.
The American Journal of Physiology
|
January 1, 1990
Sepsis does not alter red blood cell glucose metabolism or Na+ concentration: a 2H-, 23Na-NMR study
R S Hotchkiss, S K Song, C S Ling, et al.
Page
of 7
Search research articles
Search
Showing results (41-50 of 64) with videos related to
Sort By:
Page
of 7
Analytical Biochemistry
|
January 1, 1985
Determination of intact-tissue glycerophosphorylcholine levels by quantitative 31P nuclear magnetic resonance spectroscopy and correlation with spectrophotometric quantification
J J Billadello, J K Gard, J J Ackerman, et al.
Magnetic Resonance in Medicine
|
July 11, 1998
Evaluation of extra- and intracellular apparent diffusion in normal and globally ischemic rat brain via 19F NMR
T Q Duong, J J Ackerman, H S Ying, et al.
Magnetic Resonance in Medicine
|
May 1, 1992
Concurrent quantification of tissue metabolism and blood flow via 2H/31P NMR in vivo. III. Alterations of muscle blood flow and metabolism during sepsis
S K Song, R S Hotchkiss, I E Karl, et al.
Journal of Neurochemistry
|
June 1, 1999
Sepsis increases intracellular free calcium in brain
S A Anderson, S K Song, J J Ackerman, et al.
The Journal of Physiology
|
January 1, 1981
The role of intrarenal pH in regulation of ammoniagenesis: [31P]NMR studies of the isolated perfused rat kidney
J J Ackerman, M Lowry, G K Radda, et al.
The American Journal of Physiology
|
May 1, 1997
Quantification of ion transport in perfused rat heart: 133Cs+ as an NMR active K+ analog
P A Schornack, S K Song, C S Ling, et al.
Magnetic Resonance in Medicine
|
November 1, 1996
The NMR chemical shift pH measurement revisited: analysis of error and modeling of a pH dependent reference
J J Ackerman, G E Soto, W M Spees, et al.
Cancer Research
|
June 15, 1991
Modulation of murine radiation-induced fibrosarcoma-1 tumor metabolism and blood flow in situ via glucose and mannitol administration monitored by 31P and 2H nuclear magnetic resonance spectroscopy
Y C Hwang, S G Kim, J L Evelhoch, et al.
Science (New York, N.Y.)
|
June 14, 1985
Monitoring the time course of cerebral deoxyglucose metabolism by 31P nuclear magnetic resonance spectroscopy
R K Deuel, G M Yue, W R Sherman, et al.
The American Journal of Physiology
|
January 1, 1990
Sepsis does not alter red blood cell glucose metabolism or Na+ concentration: a 2H-, 23Na-NMR study
R S Hotchkiss, S K Song, C S Ling, et al.
Page
of 7