TY - JOUR
T1 - Lateralization and gender differences in the dopaminergic response to unpredictable reward in the human ventral striatum
AU - Martin-Soelch, Chantal
AU - Szczepanik, Joanna
AU - Nugent, Allison
AU - Barhaghi, Krystle
AU - Rallis, Denise
AU - Herscovitch, Peter
AU - Carson, Richard E.
AU - Drevets, Wayne C.
PY - 2011/5
Y1 - 2011/5
N2 - Electrophysiological studies have shown that mesostriatal dopamine (DA) neurons increase activity in response to unpredicted rewards. With respect to other functions of the mesostriatal dopaminergic system, dopamine's actions show prominent laterality effects. Whether changes in DA transmission elicited by rewards also are lateralized, however, has not been investigated. Using [11C]raclopride-PET to assess the striatal DA response to unpredictable monetary rewards, we hypothesized that such rewards would induce an asymmetric reduction in [11C]raclopride binding in the ventral striatum, reflecting lateralization of endogenous dopamine release. In 24 healthy volunteers, differences in the regional D2/3 receptor binding potential (ΔBP) between an unpredictable reward condition and a sensorimotor control condition were measured using the bolus-plus-constant-infusion [11C]raclopride method. During the reward condition subjects randomly received monetary awards while performing a 'slot-machine' task. The ΔBP between conditions was assessed in striatal regions-of-interest and compared between left and right sides. We found a significant condition×lateralization interaction in the ventral striatum. A significant reduction in binding potential (BPND) in the reward condition vs. the control condition was found only in the right ventral striatum, and the ΔBP was greater in the right than the left ventral striatum. Unexpectedly, these laterality effects appeared to be partly accounted for by gender differences, as our data showed a significant bilateral BPND reduction in women while in men the reduction reached significance only in the right ventral striatum. These data suggest that DA release in response to unpredictable reward is lateralized in the human ventral striatum, particularly in males.
AB - Electrophysiological studies have shown that mesostriatal dopamine (DA) neurons increase activity in response to unpredicted rewards. With respect to other functions of the mesostriatal dopaminergic system, dopamine's actions show prominent laterality effects. Whether changes in DA transmission elicited by rewards also are lateralized, however, has not been investigated. Using [11C]raclopride-PET to assess the striatal DA response to unpredictable monetary rewards, we hypothesized that such rewards would induce an asymmetric reduction in [11C]raclopride binding in the ventral striatum, reflecting lateralization of endogenous dopamine release. In 24 healthy volunteers, differences in the regional D2/3 receptor binding potential (ΔBP) between an unpredictable reward condition and a sensorimotor control condition were measured using the bolus-plus-constant-infusion [11C]raclopride method. During the reward condition subjects randomly received monetary awards while performing a 'slot-machine' task. The ΔBP between conditions was assessed in striatal regions-of-interest and compared between left and right sides. We found a significant condition×lateralization interaction in the ventral striatum. A significant reduction in binding potential (BPND) in the reward condition vs. the control condition was found only in the right ventral striatum, and the ΔBP was greater in the right than the left ventral striatum. Unexpectedly, these laterality effects appeared to be partly accounted for by gender differences, as our data showed a significant bilateral BPND reduction in women while in men the reduction reached significance only in the right ventral striatum. These data suggest that DA release in response to unpredictable reward is lateralized in the human ventral striatum, particularly in males.
KW - Dopamine
KW - Hemispheric
KW - Motivation
KW - Positron emission tomography
UR - http://www.scopus.com/inward/record.url?scp=79955549915&partnerID=8YFLogxK
U2 - 10.1111/j.1460-9568.2011.07642.x
DO - 10.1111/j.1460-9568.2011.07642.x
M3 - Article
C2 - 21453423
AN - SCOPUS:79955549915
SN - 0953-816X
VL - 33
SP - 1706
EP - 1715
JO - European Journal of Neuroscience
JF - European Journal of Neuroscience
IS - 9
ER -