Amide proton transfer (APT) imaging is a type of chemical exchange-dependent saturation transfer (CEST) magnetic resonance imaging (MRI) in which amide protons of endogenous mobile proteins and peptides in tissue are detected. Initial studies have shown promising results for distinguishing tumor from surrounding brain in patients, but these data were hampered by magnetic field inhomogeneity and a low signal-to-noise ratio (SNR). Here a practical six-offset APT data acquisition scheme is presented that, together with a separately acquired CEST spectrum, can provide B0-inhomogeneity corrected human brain APT images of sufficient SNR within a clinically relevant time frame. Data from nine brain tumor patients at 3T shows that APT intensities w...
Purpose—Amide proton transfer (APT) imaging is able to extend the achievable MRI contrast to the pro...
Amide proton transfer-weighted (APTw) MR imaging shows promise as a biomarker of brain tumor status....
In this work we show that relaxation-compensated amide proton transfer (APT) imaging at 7.0 T is ass...
PURPOSE: To provide insight into the effect of water T1 relaxation (T1wat ) on amide proton transfer...
Amide proton transfer‐weighted (APTw) imaging is a molecular MRI technique that generates image cont...
PURPOSE: To provide insight into the effect of water T1 relaxation (T1wat ) on amide proton transfer...
Amide proton transfer (APT) imaging is one of the chemical exchange saturation transfer (CEST) imagi...
Chemical exchange saturation transfer (CEST) provides an indirect means to detect exchangeable proto...
PurposePET using radiolabelled amino acids has become a promising tool in the diagnostics of gliomas...
Objective Amide proton transfer (APT) weighted chemical exchange saturation transfer (CEST) imaging ...
Amide proton transfer-chemical exchange saturation transfer (APT-CEST) imaging provides important in...
Chemical exchange saturation transfer (CEST) has recently emerged as a promising imaging technique. ...
[Purpose]To explore the relationship among parameters of magnetic resonance spectroscopy (MRS) and a...
Amide proton transfer-weighted (APTw) MR imaging shows promise as a biomarker of brain tumor status....
Abnormal pH is a common feature of malignant tumours and has been associated clinically with sub-opt...
Purpose—Amide proton transfer (APT) imaging is able to extend the achievable MRI contrast to the pro...
Amide proton transfer-weighted (APTw) MR imaging shows promise as a biomarker of brain tumor status....
In this work we show that relaxation-compensated amide proton transfer (APT) imaging at 7.0 T is ass...
PURPOSE: To provide insight into the effect of water T1 relaxation (T1wat ) on amide proton transfer...
Amide proton transfer‐weighted (APTw) imaging is a molecular MRI technique that generates image cont...
PURPOSE: To provide insight into the effect of water T1 relaxation (T1wat ) on amide proton transfer...
Amide proton transfer (APT) imaging is one of the chemical exchange saturation transfer (CEST) imagi...
Chemical exchange saturation transfer (CEST) provides an indirect means to detect exchangeable proto...
PurposePET using radiolabelled amino acids has become a promising tool in the diagnostics of gliomas...
Objective Amide proton transfer (APT) weighted chemical exchange saturation transfer (CEST) imaging ...
Amide proton transfer-chemical exchange saturation transfer (APT-CEST) imaging provides important in...
Chemical exchange saturation transfer (CEST) has recently emerged as a promising imaging technique. ...
[Purpose]To explore the relationship among parameters of magnetic resonance spectroscopy (MRS) and a...
Amide proton transfer-weighted (APTw) MR imaging shows promise as a biomarker of brain tumor status....
Abnormal pH is a common feature of malignant tumours and has been associated clinically with sub-opt...
Purpose—Amide proton transfer (APT) imaging is able to extend the achievable MRI contrast to the pro...
Amide proton transfer-weighted (APTw) MR imaging shows promise as a biomarker of brain tumor status....
In this work we show that relaxation-compensated amide proton transfer (APT) imaging at 7.0 T is ass...