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Biochemical and Biophysical Research Communications
|
August 29, 1986
In vivo 31P nuclear magnetic resonance studies of arsenite induced changes in hepatic phosphate levels
B Chen, C T Burt, P L Goering, et al.
Free Radical Biology & Medicine
|
July 20, 2001
Protein NMR spin trapping with [methyl-13C(3)]-MNP: application to the tyrosyl radical of equine myoglobin
B Bose-Basu, E F DeRose, Y R Chen, et al.
Biochemistry
|
June 21, 1994
Studies of inhibitor binding to Escherichia coli purine nucleoside phosphorylase using the transferred nuclear Overhauser effect and rotating-frame nuclear Overhauser enhancement
M E Perlman, D G Davis, G W Koszalka, et al.
The Journal of Biological Chemistry
|
February 10, 1982
13C nuclear magnetic resonance studies of the biosynthesis by Microbacterium ammoniaphilum of L-glutamate selectively enriched with carbon-13
T E Walker, C H Han, V H Kollman, et al.
International Journal of Peptide and Protein Research
|
April 1, 1987
CD-n.m.r. study of the solution conformation of bradykinin analogs containing alpha-aminoisobutyric acid
J R Cann, R E London, C J Unkefer, et al.
Archives of Biochemistry and Biophysics
|
October 15, 1983
Protonated state of methotrexate, trimethoprim, and pyrimethamine bound to dihydrofolate reductase
L Cocco, B Roth, C Temple, et al.
Blood
|
May 1, 1987
Cytosolic free calcium levels in sickle red blood cells
E Murphy, L R Berkowitz, E Orringer, et al.
Magnetic Resonance in Medicine
|
September 1, 1991
Magnetic resonance imaging study of the rat cerebral ventricular system utilizing intracerebrally administered contrast agents
X M Wan, T C Fu, P H Smith, et al.
Biochemistry
|
November 13, 1990
Bradykinin and its Gly6 analogue are substrates of cyclophilin: a fluorine-19 magnetization transfer study
R E London, D G Davis, R J Vavrek, et al.
The American Journal of Physiology
|
October 1, 1986
Nuclear magnetic resonance measurement of cytosolic free calcium levels in human red blood cells
E Murphy, L Levy, L R Berkowitz, et al.
Page
of 11
Search research articles
Search
Showing results (91-100 of 110) with videos related to
Sort By:
Page
of 11
Biochemical and Biophysical Research Communications
|
August 29, 1986
In vivo 31P nuclear magnetic resonance studies of arsenite induced changes in hepatic phosphate levels
B Chen, C T Burt, P L Goering, et al.
Free Radical Biology & Medicine
|
July 20, 2001
Protein NMR spin trapping with [methyl-13C(3)]-MNP: application to the tyrosyl radical of equine myoglobin
B Bose-Basu, E F DeRose, Y R Chen, et al.
Biochemistry
|
June 21, 1994
Studies of inhibitor binding to Escherichia coli purine nucleoside phosphorylase using the transferred nuclear Overhauser effect and rotating-frame nuclear Overhauser enhancement
M E Perlman, D G Davis, G W Koszalka, et al.
The Journal of Biological Chemistry
|
February 10, 1982
13C nuclear magnetic resonance studies of the biosynthesis by Microbacterium ammoniaphilum of L-glutamate selectively enriched with carbon-13
T E Walker, C H Han, V H Kollman, et al.
International Journal of Peptide and Protein Research
|
April 1, 1987
CD-n.m.r. study of the solution conformation of bradykinin analogs containing alpha-aminoisobutyric acid
J R Cann, R E London, C J Unkefer, et al.
Archives of Biochemistry and Biophysics
|
October 15, 1983
Protonated state of methotrexate, trimethoprim, and pyrimethamine bound to dihydrofolate reductase
L Cocco, B Roth, C Temple, et al.
Blood
|
May 1, 1987
Cytosolic free calcium levels in sickle red blood cells
E Murphy, L R Berkowitz, E Orringer, et al.
Magnetic Resonance in Medicine
|
September 1, 1991
Magnetic resonance imaging study of the rat cerebral ventricular system utilizing intracerebrally administered contrast agents
X M Wan, T C Fu, P H Smith, et al.
Biochemistry
|
November 13, 1990
Bradykinin and its Gly6 analogue are substrates of cyclophilin: a fluorine-19 magnetization transfer study
R E London, D G Davis, R J Vavrek, et al.
The American Journal of Physiology
|
October 1, 1986
Nuclear magnetic resonance measurement of cytosolic free calcium levels in human red blood cells
E Murphy, L Levy, L R Berkowitz, et al.
Page
of 11