Imaging with intermolecular multiple-quantum coherences in solution nuclear magnetic resonance.
Publication
, Journal Article
Richter, W; Lee, S; Warren, WS; He, Q
Published in: Science (New York, N.Y.)
February 1995
A magnetic resonance imaging technique based on intermolecular multiple-quantum coherences in solution (the correlated spectroscopy revamped by asymmetric z gradient echo detection or CRAZED experiment) is described here. Correlations between spins in different molecules were detected by magnetic-field gradient pulses. In order for a correlation to yield an observable signal, the separation between the two spins must be within a narrow band that depends on the area of the gradient pulses. The separation can be tuned from less than 10 micrometers to more than 1 millimeter, a convenient range for many applications.
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Published In
Science (New York, N.Y.)
DOI
EISSN
1095-9203
ISSN
0036-8075
Publication Date
February 1995
Volume
267
Issue
5198
Start / End Page
654 / 657
Related Subject Headings
- Mathematics
- Magnetic Resonance Spectroscopy
- General Science & Technology
- Benzene
- Acetone
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Richter, W., Lee, S., Warren, W. S., & He, Q. (1995). Imaging with intermolecular multiple-quantum coherences in solution nuclear magnetic resonance. Science (New York, N.Y.), 267(5198), 654–657. https://doi.org/10.1126/science.7839140
Richter, W., S. Lee, W. S. Warren, and Q. He. “Imaging with intermolecular multiple-quantum coherences in solution nuclear magnetic resonance.” Science (New York, N.Y.) 267, no. 5198 (February 1995): 654–57. https://doi.org/10.1126/science.7839140.
Richter W, Lee S, Warren WS, He Q. Imaging with intermolecular multiple-quantum coherences in solution nuclear magnetic resonance. Science (New York, NY). 1995 Feb;267(5198):654–7.
Richter, W., et al. “Imaging with intermolecular multiple-quantum coherences in solution nuclear magnetic resonance.” Science (New York, N.Y.), vol. 267, no. 5198, Feb. 1995, pp. 654–57. Epmc, doi:10.1126/science.7839140.
Richter W, Lee S, Warren WS, He Q. Imaging with intermolecular multiple-quantum coherences in solution nuclear magnetic resonance. Science (New York, NY). 1995 Feb;267(5198):654–657.
Published In
Science (New York, N.Y.)
DOI
EISSN
1095-9203
ISSN
0036-8075
Publication Date
February 1995
Volume
267
Issue
5198
Start / End Page
654 / 657
Related Subject Headings
- Mathematics
- Magnetic Resonance Spectroscopy
- General Science & Technology
- Benzene
- Acetone