PET-investigations of beta-adrenoceptors in heart, lungs, and brain are of great clinical interest. Receptor densities are altered under various pathophysiological conditions. This review gives an overview of PET-research of beta-adrenoceptors. The clinical relevance of in vivo PET-investigations of beta-adrenoceptors is described for heart, lungs, and brain. Results obtained with the available PET-ligands are discussed. [(11)C]CGP 12177 has been successfully applied in patients with cardiac and pulmonary diseases. The complicated labelling procedure prevents widespread use of the radiopharmaceutical. Due to its lipophilicity, [(18)F]-fluorocarazolol is a suitable ligand for cardiac and pulmonary as well as for cerebral sites. Non-specific ...
The beta-adrenoceptor (beta-AR) plays an important role in the regulation of heart function and has ...
Five potent, lipophilic beta-adrenoceptor antagonists (carvedilol, pindolol, toliprolol and fluorina...
We report positron emission tomography studies of beta -adrenoceptors in the human thorax with (S)-[...
PET-investigations of beta-adrenoceptors in heart, lungs, and brain are of great clinical interest. ...
Beta-adrenoceptors are predominantly located in the cerebral cortex, nucleus accumbens and striatum....
S-1'-[F-18]fluorocarazolol (S-(-)-4-(2-hydroxy-3-(1'-[F-18]fluoroisopropyl)-aminopropoxy)carbazole, ...
The biodistribution of S-(-)-4-(2-hydroxy-3-(1'-[ F-18]fluoroisopropyl)-aminopropoxy)carbazole ([F-1...
PET imaging may provide new insights in in vivo changes of cardiac beta-adrenoceptors. Using 11C-CGP...
Myocardial and pulmonary beta-adrenoceptors can be imaged and quantified with the antagonist (S)-4-[...
Myocardial and pulmonary beta-adrenoceptors can be imaged and quantified with the antagonist (S)-4-[...
The agonist radioligand N-[2-hydroxy-5-[1-hydroxy-2-[[2-(4-[C-11]-methoxyphenyl)-1-methylethyl]amino...
This review focuses on positron emission tomography (PET)-imaging of receptors in the sympathetic an...
In vivo quantification of β-adrenoceptors in the brain, heart and lung could be very valuable for th...
The beta-adrenoceptor (beta-AR) plays an important role in the regulation of heart function and has ...
The beta-adrenoceptor (beta-AR) plays an important role in the regulation of heart function and has ...
Five potent, lipophilic beta-adrenoceptor antagonists (carvedilol, pindolol, toliprolol and fluorina...
We report positron emission tomography studies of beta -adrenoceptors in the human thorax with (S)-[...
PET-investigations of beta-adrenoceptors in heart, lungs, and brain are of great clinical interest. ...
Beta-adrenoceptors are predominantly located in the cerebral cortex, nucleus accumbens and striatum....
S-1'-[F-18]fluorocarazolol (S-(-)-4-(2-hydroxy-3-(1'-[F-18]fluoroisopropyl)-aminopropoxy)carbazole, ...
The biodistribution of S-(-)-4-(2-hydroxy-3-(1'-[ F-18]fluoroisopropyl)-aminopropoxy)carbazole ([F-1...
PET imaging may provide new insights in in vivo changes of cardiac beta-adrenoceptors. Using 11C-CGP...
Myocardial and pulmonary beta-adrenoceptors can be imaged and quantified with the antagonist (S)-4-[...
Myocardial and pulmonary beta-adrenoceptors can be imaged and quantified with the antagonist (S)-4-[...
The agonist radioligand N-[2-hydroxy-5-[1-hydroxy-2-[[2-(4-[C-11]-methoxyphenyl)-1-methylethyl]amino...
This review focuses on positron emission tomography (PET)-imaging of receptors in the sympathetic an...
In vivo quantification of β-adrenoceptors in the brain, heart and lung could be very valuable for th...
The beta-adrenoceptor (beta-AR) plays an important role in the regulation of heart function and has ...
The beta-adrenoceptor (beta-AR) plays an important role in the regulation of heart function and has ...
Five potent, lipophilic beta-adrenoceptor antagonists (carvedilol, pindolol, toliprolol and fluorina...
We report positron emission tomography studies of beta -adrenoceptors in the human thorax with (S)-[...