While all reversible receptor-targeting radioligands for positron emission tomography (PET) can be displaced by competition with an antagonist at the receptor, many radiotracers show limited occupancies using agonists even at high doses. [11C]Raclopride, a D2/D3 receptor radiotracer with rapid kinetics, can identify the direction of changes in the neurotransmitter dopamine, but quantitative interpretation of the relationship between dopamine levels and radiotracer binding has proven elusive. Agonist-induced receptor desensitization and internalization, a homeostatic mechanism to downregulate neurotransmitter-mediated function, can shift radioligand-receptor binding affinity and confound PET interpretations of receptor occupancy. In this stu...
In positron emission tomography and single photon emission computed tomography studies using D2 dopa...
TO THE EDITOR: We have read with great interest a recent article by Ceccarini et al. (1). In their s...
The ability to image endogenous neurotransmitter release will vastly increase our understanding of a...
ABSTRACT Competition with endogenous dopamine (DA) is usually invoked to explain changes in [ 11 C]r...
Background: Dopamine D2/3 receptor (D2/3R) agonist radiopharmaceuticals are considered superior to a...
The goals of the present thesis were to study high affinity agonist binding at the D2 dopamine recep...
Background: Dopamine D-2/3 receptor (D2/3R) agonist radiopharmaceuticals are considered superior to ...
Background: Dopamine D2/3 receptor (D2/3R) agonist radiopharmaceuticals are considered superior to a...
PET measurements of stimulant-induced dopamine (DA) release are typically performed with antagonist ...
Competition by endogenous dopamine with the binding of D2 dopamine receptor ligands may be important...
Imaging the competition between D(2/3) radioligands and endogenous dopamine is so far the only way t...
PET measurements of stimulant-induced dopamine (DA) release are typically performed with antagonist ...
The dopamine D2 receptor exists in vitro in two states of agonist affinity: a high-affinity state me...
Positron emission tomography (PET) is a molecular imaging technique that allows for non-invasive exa...
In positron emission tomography and single photon emission computed tomography studies using D2 dopa...
In positron emission tomography and single photon emission computed tomography studies using D2 dopa...
TO THE EDITOR: We have read with great interest a recent article by Ceccarini et al. (1). In their s...
The ability to image endogenous neurotransmitter release will vastly increase our understanding of a...
ABSTRACT Competition with endogenous dopamine (DA) is usually invoked to explain changes in [ 11 C]r...
Background: Dopamine D2/3 receptor (D2/3R) agonist radiopharmaceuticals are considered superior to a...
The goals of the present thesis were to study high affinity agonist binding at the D2 dopamine recep...
Background: Dopamine D-2/3 receptor (D2/3R) agonist radiopharmaceuticals are considered superior to ...
Background: Dopamine D2/3 receptor (D2/3R) agonist radiopharmaceuticals are considered superior to a...
PET measurements of stimulant-induced dopamine (DA) release are typically performed with antagonist ...
Competition by endogenous dopamine with the binding of D2 dopamine receptor ligands may be important...
Imaging the competition between D(2/3) radioligands and endogenous dopamine is so far the only way t...
PET measurements of stimulant-induced dopamine (DA) release are typically performed with antagonist ...
The dopamine D2 receptor exists in vitro in two states of agonist affinity: a high-affinity state me...
Positron emission tomography (PET) is a molecular imaging technique that allows for non-invasive exa...
In positron emission tomography and single photon emission computed tomography studies using D2 dopa...
In positron emission tomography and single photon emission computed tomography studies using D2 dopa...
TO THE EDITOR: We have read with great interest a recent article by Ceccarini et al. (1). In their s...
The ability to image endogenous neurotransmitter release will vastly increase our understanding of a...