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  4. Measurement of cross relaxation between two selected nuclei by synchronous nutation of magnetization in nuclear magnetic resonance
 
research article

Measurement of cross relaxation between two selected nuclei by synchronous nutation of magnetization in nuclear magnetic resonance

Burghardt, Irene
•
Konrat, Robert
•
Boulat, Benoit
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1993
The Journal of Chemical Physics

A novel technique is described that allows one to measure cross-relaxation rates (Overhauser effects) between 2 selected nuclei in high-resoln. NMR. The 2 chosen sites are irradiated simultaneously with the sidebands of an amplitude-modulated radiofrequency field, so that their magnetization vectors are forced to undergo a simultaneous motion, which is referred to as synchronous nutation. From the time-dependence obsd. for different initial conditions, one may derive cross-relaxation rates, and hence det. internuclear distances. The scalar interactions between the selected spins and other spins belonging to the same coupling network are effectively decoupled. Also, cross relaxation to other spins in the environment does not affect the transient response of the selected spins, which are therefore in effect isolated from their environment in terms of dipolar interactions. The method is particularly suitable to study cases where normal Overhauser effects are perturbed by spin-diffusion effects due to the presence of further spins. The technique is applied to the protein bovine pancreatic trypsin inhibitor. [on SciFinder (R)]

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Type
research article
DOI
10.1063/1.464287
Author(s)
Burghardt, Irene
Konrat, Robert
Boulat, Benoit
Vincent, Sebastien J. F.
Bodenhausen, Geoffrey  
Date Issued

1993

Published in
The Journal of Chemical Physics
Volume

98

Issue

2

Start page

1721

End page

36

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LRMB  
Available on Infoscience
February 22, 2006
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/225575
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