We present a new method for magnetization transfer (MT) ratio imaging in the brain that requires no separate saturation pulse. Interslice MT effects that are inherent to multi-slice balanced steady-state free precession (bSSFP) imaging were controlled via an interslice delay time to generate MT-weighted (0 s delay) and reference images (5-8 s delay) for MT ratio (MTR) imaging of the brain. The effects of varying flip angle and phase encoding (PE) order were investigated experimentally in normal, healthy subjects. Values of up to ∼50% and ∼40% were observed for white and gray matter MTR. Centric PE showed larger MTR, higher SNR, and better contrast between white and gray matter than linear PE. Simulations of a two-pool model of MT agreed wel...
Summary: A novel semiinterleaved gradient-echo (GE) se-quence for quantitative measurement of magnet...
Balanced steady state free precession (bSSFP) suffers from a substantial signal loss in tissues due ...
Magnetization transfer ratio (MTR) has become an important tool to study various tissue abnormalitie...
We present a new method for magnetization transfer (MT) ratio imaging in the brain that requires no ...
We present a new method for magnetization transfer (MT) ratio imaging in the brain that requires no ...
We present a new method for magnetization transfer (MT) ratio imaging in the brain that re-quires no...
Magnetization transfer (MT) reflects the exchange of magnetization between protons bound to macromol...
Balanced steady-state free precession (bSSFP) suffers from a considerable signal loss in tissues. Th...
Introduction Magnetization transfer (MT) is sensitive to the macromolecular environment of water pro...
The formerly proposed concept for magnetization transfer imaging (MTI) using balanced steady-state f...
In tissues, the signal of balanced steady-state free precession (bSSFP) is considerably reduced from...
Attempts to optimize the magnetization transfer ratio (MTR) obtained from spoiled gradient echo MRI ...
It is generally accepted that signal formation in balanced steady-state free precession (bSSFP) is a...
Recently, a new and fast three-dimensional imaging technique for magnetization transfer ratio (MTR) ...
Purpose : Magnetization transfer imaging(MTI) is a new imaging contrast technique. Our MT pulse sequ...
Summary: A novel semiinterleaved gradient-echo (GE) se-quence for quantitative measurement of magnet...
Balanced steady state free precession (bSSFP) suffers from a substantial signal loss in tissues due ...
Magnetization transfer ratio (MTR) has become an important tool to study various tissue abnormalitie...
We present a new method for magnetization transfer (MT) ratio imaging in the brain that requires no ...
We present a new method for magnetization transfer (MT) ratio imaging in the brain that requires no ...
We present a new method for magnetization transfer (MT) ratio imaging in the brain that re-quires no...
Magnetization transfer (MT) reflects the exchange of magnetization between protons bound to macromol...
Balanced steady-state free precession (bSSFP) suffers from a considerable signal loss in tissues. Th...
Introduction Magnetization transfer (MT) is sensitive to the macromolecular environment of water pro...
The formerly proposed concept for magnetization transfer imaging (MTI) using balanced steady-state f...
In tissues, the signal of balanced steady-state free precession (bSSFP) is considerably reduced from...
Attempts to optimize the magnetization transfer ratio (MTR) obtained from spoiled gradient echo MRI ...
It is generally accepted that signal formation in balanced steady-state free precession (bSSFP) is a...
Recently, a new and fast three-dimensional imaging technique for magnetization transfer ratio (MTR) ...
Purpose : Magnetization transfer imaging(MTI) is a new imaging contrast technique. Our MT pulse sequ...
Summary: A novel semiinterleaved gradient-echo (GE) se-quence for quantitative measurement of magnet...
Balanced steady state free precession (bSSFP) suffers from a substantial signal loss in tissues due ...
Magnetization transfer ratio (MTR) has become an important tool to study various tissue abnormalitie...