1 research outputs found
<sup>15</sup>N Heteronuclear Chemical Exchange Saturation Transfer MRI
A two-step
heteronuclear enhancement approach was combined with
chemical exchange saturation transfer (CEST) to magnify <sup>15</sup>N MRI signal of molecules through indirect detection via water protons.
Previous CEST studies have been limited to radiofrequency (rf) saturation
transfer or excitation transfer employing protons. Here, the signal
of <sup>15</sup>N is detected indirectly through the water signal
by first inverting selectively protons that are scalar-coupled to <sup>15</sup>N in the urea molecule, followed by chemical exchange of
the amide proton to bulk water. In addition to providing a small sensitivity
enhancement, this approach can be used to monitor the exchange rates
and thus the pH sensitivity of the participating <sup>15</sup>N-bound
protons