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1.
Nat Commun ; 15(1): 4233, 2024 May 18.
Article in English | MEDLINE | ID: mdl-38762463

ABSTRACT

The ventral pallidum (VP) contains GABA and glutamate neurons projecting to ventral tegmental area (VTA) whose stimulation drives approach and avoidance, respectively. Yet little is known about the mechanisms by which VP cell types shape VTA activity and drive behavior. Here, we found that both VP GABA and glutamate neurons were activated during approach to reward or by delivery of an aversive stimulus. Stimulation of VP GABA neurons inhibited VTA GABA, but activated dopamine and glutamate neurons. Remarkably, stimulation-evoked activation was behavior-contingent such that VTA recruitment was inhibited when evoked by the subject's own action. Conversely, VP glutamate neurons activated VTA GABA, as well as dopamine and glutamate neurons, despite driving aversion. However, VP glutamate neurons evoked dopamine in aversion-associated ventromedial nucleus accumbens (NAc), but reduced dopamine release in reward-associated dorsomedial NAc. These findings show how heterogeneous VP projections to VTA can be engaged to shape approach and avoidance behaviors.


Subject(s)
Avoidance Learning , Basal Forebrain , GABAergic Neurons , Glutamic Acid , Reward , Ventral Tegmental Area , Ventral Tegmental Area/physiology , Ventral Tegmental Area/metabolism , Ventral Tegmental Area/cytology , Animals , Glutamic Acid/metabolism , Basal Forebrain/metabolism , Basal Forebrain/physiology , Male , GABAergic Neurons/metabolism , GABAergic Neurons/physiology , Avoidance Learning/physiology , Mice , Dopamine/metabolism , Nucleus Accumbens/metabolism , Nucleus Accumbens/cytology , Nucleus Accumbens/physiology , Neurons/metabolism , Neurons/physiology , gamma-Aminobutyric Acid/metabolism , Dopaminergic Neurons/metabolism , Dopaminergic Neurons/physiology , Mice, Inbred C57BL , Behavior, Animal/physiology
2.
Neuron ; 112(3): 488-499.e5, 2024 Feb 07.
Article in English | MEDLINE | ID: mdl-38086374

ABSTRACT

Ventral tegmental area (VTA) projections to the nucleus accumbens (NAc) drive reward-related motivation. Although dopamine neurons are predominant, a substantial glutamatergic projection is also present, and a subset of these co-release both dopamine and glutamate. Optogenetic stimulation of VTA glutamate neurons not only supports self-stimulation but can also induce avoidance behavior, even in the same assay. Here, we parsed the selective contribution of glutamate or dopamine co-release from VTA glutamate neurons to reinforcement and avoidance. We expressed channelrhodopsin-2 (ChR2) in mouse VTA glutamate neurons in combination with CRISPR-Cas9 to disrupt either the gene encoding vesicular glutamate transporter 2 (VGLUT2) or tyrosine hydroxylase (Th). Selective disruption of VGLUT2 abolished optogenetic self-stimulation but left real-time place avoidance intact, whereas CRISPR-Cas9 deletion of Th preserved self-stimulation but abolished place avoidance. Our results demonstrate that glutamate release from VTA glutamate neurons is positively reinforcing but that dopamine release from VTA glutamate neurons can induce avoidance behavior.


Subject(s)
Dopamine , Glutamic Acid , Mice , Animals , Glutamic Acid/physiology , Reward , Ventral Tegmental Area/physiology , Dopaminergic Neurons/metabolism , Vesicular Glutamate Transport Protein 2/genetics , Vesicular Glutamate Transport Protein 2/metabolism , Tyrosine 3-Monooxygenase/metabolism
3.
J Glob Health ; 13: 06014, 2023 May 05.
Article in English | MEDLINE | ID: mdl-37141526

ABSTRACT

Background: The South Asian Association for Regional Cooperation (SAARC) covers Afghanistan, Bangladesh, Bhutan, India, Maldives, Nepal, Pakistan, and Sri Lanka. We conducted a comparative analysis of the trade-off between the health policies for the prevention of COVID-19 spread and the impact of these policies on the economies and livelihoods of the South Asia populations. Methods: We analyzed COVID-19 data on epidemiology, public health and health policy, health system capacity, and macroeconomic indicators from January 2020 to March 2021 to determine temporal trends by conducting joinpoint regression analysis using average weekly percent change (AWPC). Results: Bangladesh had the highest statistically significant AWPC for new COVID-19 cases (17.0; 95% CI = 7.7-27.1, P < 0.001), followed by the Maldives (12.9; 95% CI = 5.3-21.0, P < 0.001) and India (10.0; 95% CI = 8.4-11.5, P < 0.001). The AWPC for COVID-19 deaths was significant for India (6.5; 95% CI = 4.3-8.9, P < 0.001) and Bangladesh (6.1; 95% CI = 3.7-8.5, P < 0.001). Nepal (55.79%), and India (34.91%) had the second- and third-highest increase in unemployment, while Afghanistan (6.83%) and Pakistan (16.83%) had the lowest. The rate of change of real GDP had the highest decrease for Maldives (557.51%), and India (297.03%); Pakistan (46.46%) and Bangladesh (70.80%), however, had the lowest decrease. The government response stringency index for Pakistan had a see-saw pattern with a sharp decline followed by an increase in the government health policy restrictions that approximated the test-positivity trend. Conclusions: Unlike developed economies, the South Asian developing countries experienced a trade-off between health policy and their economies during the COVID-19 pandemic. South Asian countries (Nepal and India), with extended periods of lockdowns and a mismatch between temporal trends of government response stringency index and the test-positivity or disease incidence, had higher adverse economic effects, unemployment, and burden of COVID-19. Pakistan demonstrated targeted lockdowns with a rapid see-saw pattern of government health policy response that approximated the test-positivity trend and resulted in lesser adverse economic effects, unemployment, and burden of COVID-19.


Subject(s)
COVID-19 , Pandemics , Humans , Asia, Southern , Communicable Disease Control , India/epidemiology , Bangladesh/epidemiology , Pakistan/epidemiology , Health Policy
4.
J Glob Health ; 12: 05017, 2022 Aug 08.
Article in English | MEDLINE | ID: mdl-35932219

ABSTRACT

Background: Countries making up the Nordic region - Denmark, Finland, Iceland, Norway, and Sweden - have minimal socioeconomic, cultural, and geographical differences between them, allowing for a fair comparative analysis of the health policy and economy trade-off in their national approaches towards mitigating the impact of the COVID-19 pandemic. Methods: This study utilized publicly available COVID-19 data of the Nordic countries from January 2020 to January 3, 2021. COVID-19 epidemiology, public health and health policy, health system capacity, and macroeconomic data were analysed for each Nordic country. Joinpoint regression analysis was performed to identify changes in temporal trends using average monthly percent change (AMPC) and average weekly percent change (AWPC). Results: Sweden's health policy, being by far the most relaxed response to COVID-19, was found to have the largest COVID-19 incidence and mortality, and the highest AWPC increases for both indicators (13.5, 95% CI = 5.6, 22.0, P < 0.001; 6.3, 95% CI = 3.5, 9.1, P < 0.001). Denmark had the highest number of COVID-19 tests per capita, consistent with their approach of increased testing as a preventive strategy for disease transmission. Iceland had the second-highest number of tests per capita due to their mass-testing, contact tracing, quarantine and isolation response. Only Norway had a significant increase in unemployment (AMPC = 2.8%, 95% CI = 0.7-4.9, P < 0.009) while the percentage change in real Gross Domestic Product (GDP) was insignificant for all countries. Conclusions: There was no trade-off between public health policy and economy during the COVID-19 pandemic in the Nordic region. Sweden's relaxed and delayed COVID-19 health policy response did not benefit the economy in the short term, while leading to disproportionate COVID-19 hospitalizations and mortality.


Subject(s)
COVID-19 , Pandemics , COVID-19/epidemiology , Health Policy , Humans , Incidence , Pandemics/prevention & control , Scandinavian and Nordic Countries/epidemiology
5.
Curr Biol ; 31(23): 5350-5363.e5, 2021 12 06.
Article in English | MEDLINE | ID: mdl-34637751

ABSTRACT

Dopamine has been suggested to encode cue-reward prediction errors during Pavlovian conditioning, signaling discrepancies between actual versus expected reward predicted by the cues.1-5 While this theory has been widely applied to reinforcement learning concerning instrumental actions, whether dopamine represents action-outcome prediction errors and how it controls sequential behavior remain largely unknown. The vast majority of previous studies examining dopamine responses primarily have used discrete reward-predictive stimuli,1-15 whether Pavlovian conditioned stimuli for which no action is required to earn reward or explicit discriminative stimuli that essentially instruct an animal how and when to respond for reward. Here, by training mice to perform optogenetic intracranial self-stimulation, we examined how self-initiated goal-directed behavior influences nigrostriatal dopamine transmission during single and sequential instrumental actions, in behavioral contexts with minimal overt changes in the animal's external environment. We found that dopamine release evoked by direct optogenetic stimulation was dramatically reduced when delivered as the consequence of the animal's own action, relative to non-contingent passive stimulation. This dopamine suppression generalized to food rewards was specific to the reinforced action, was temporally restricted to counteract the expected outcome, and exhibited sequence-selectivity consistent with hierarchical control of sequential behavior. These findings demonstrate that nigrostriatal dopamine signals sequence-specific prediction errors in action-outcome associations, with fundamental implications for reinforcement learning and instrumental behavior in health and disease.


Subject(s)
Dopamine , Reward , Animals , Conditioning, Classical/physiology , Cues , Dopamine/physiology , Mice , Reinforcement, Psychology
6.
Neuron ; 107(5): 864-873.e4, 2020 09 09.
Article in English | MEDLINE | ID: mdl-32610039

ABSTRACT

Like ventral tegmental area (VTA) dopamine (DA) neurons, VTA glutamate neuron activity can support positive reinforcement. However, a subset of VTA neurons co-release DA and glutamate, and DA release might be responsible for behavioral reinforcement induced by VTA glutamate neuron activity. To test this, we used optogenetics to stimulate VTA glutamate neurons in which tyrosine hydroxylase (TH), and thus DA biosynthesis, was conditionally ablated using either floxed Th mice or viral-based CRISPR/Cas9. Both approaches led to loss of TH expression in VTA glutamate neurons and loss of DA release from their distal terminals in nucleus accumbens (NAc). Despite loss of the DA signal, optogenetic activation of VTA glutamate cell bodies or axon terminals in NAc was sufficient to support reinforcement. These results suggest that glutamate release from VTA is sufficient to promote reinforcement independent of concomitant DA co-release, establishing a non-DA mechanism by which VTA activity can support reward-seeking behaviors.


Subject(s)
Glutamic Acid/metabolism , Motivation/physiology , Neurons/metabolism , Ventral Tegmental Area/metabolism , Animals , Behavior, Animal/physiology , Dopamine/metabolism , Mice , Optogenetics , Reinforcement, Psychology , Reward
7.
Neuron ; 105(3): 402-404, 2020 02 05.
Article in English | MEDLINE | ID: mdl-32027829

ABSTRACT

A vast array of animal behavior-from locomotion to human speech-is thought to consist of different hierarchical levels, but its neural implementation remains poorly understood. In this issue of Neuron, Kaplan et al. (2020) identify neuronal circuit dynamics responsible for multiple levels and timescales of hierarchical locomotion control in Caenorhabditis elegans.


Subject(s)
Caenorhabditis elegans Proteins , Neurons , Animals , Caenorhabditis elegans , Humans , Locomotion , Nervous System
8.
Neuron ; 91(5): 1069-1084, 2016 Sep 07.
Article in English | MEDLINE | ID: mdl-27568516

ABSTRACT

The striatum contains neurochemically defined compartments termed patches and matrix. Previous studies suggest patches preferentially receive limbic inputs and project to dopamine neurons in substantia nigra pars compacta (SNc), whereas matrix neurons receive sensorimotor inputs and do not innervate SNc. Using BAC-Cre transgenic mice with viral tracing techniques, we mapped brain-wide differences in the input-output organization of the patch/matrix. Findings reveal a displaced population of striatal patch neurons termed "exo-patch," which reside in matrix zones but have neurochemistry, connectivity, and electrophysiological characteristics resembling patch neurons. Contrary to previous studies, results show patch/exo-patch and matrix neurons receive both limbic and sensorimotor information. A novel inhibitory projection from bed nucleus of the stria terminalis to patch/exo-patch neurons was revealed. Projections to SNc were found to originate from patch/exo-patch and matrix neurons. These findings redefine patch/matrix beyond traditional neurochemical topography and reveal new principles about their input-output connectivity, providing a foundation for future functional studies.


Subject(s)
Corpus Striatum/physiology , Limbic Lobe/physiology , Sensorimotor Cortex/physiology , Septal Nuclei/physiology , Animals , Mice , Mice, Transgenic , Neural Pathways/physiology , Neuroanatomical Tract-Tracing Techniques , Neurons/physiology , Substantia Nigra/physiology
10.
Nat Neurosci ; 18(10): 1405-12, 2015 Oct.
Article in English | MEDLINE | ID: mdl-26404715

ABSTRACT

Exposure to stress has profound, but complex, actions on motivated behavior and decision-making. These effects are central to core symptoms of a number of psychiatric disorders that are precipitated or augmented by stress, such as depressive disorders and substance use disorders. Studying the neural substrates of stress's effects on motivation has revealed that stress affects multiple targets on circuits throughout the brain using diverse molecular signaling processes. Moreover, stress does not have unitary effects on motivated behavior, but differences in the intensity, duration, intermittency, controllability and nature of the stressor produce qualitatively and quantitatively different behavioral endpoints. Unsurprisingly, the results of neuroscientific investigations into stress and motivation often open more questions than they resolve. Here we discuss contemporary results pertaining to the neural mechanisms by which stress alters motivation, identify points of contention and highlight integrative areas for continuing research into these multifaceted complexities.


Subject(s)
Brain/physiopathology , Decision Making/physiology , Motivation/physiology , Stress, Psychological/psychology , Animals , Humans , Stress, Psychological/physiopathology
11.
Proc Natl Acad Sci U S A ; 111(51): 18357-62, 2014 Dec 23.
Article in English | MEDLINE | ID: mdl-25489094

ABSTRACT

Phasic dopamine transmission is posited to act as a critical teaching signal that updates the stored (or "cached") values assigned to reward-predictive stimuli and actions. It is widely hypothesized that these cached values determine the selection among multiple courses of action, a premise that has provided a foundation for contemporary theories of decision making. In the current work we used fast-scan cyclic voltammetry to probe dopamine-associated cached values from cue-evoked dopamine release in the nucleus accumbens of rats performing cost-benefit decision-making paradigms to evaluate critically the relationship between dopamine-associated cached values and preferences. By manipulating the amount of effort required to obtain rewards of different sizes, we were able to bias rats toward preferring an option yielding a high-value reward in some sessions and toward instead preferring an option yielding a low-value reward in others. Therefore, this approach permitted the investigation of dopamine-associated cached values in a context in which reward magnitude and subjective preference were dissociated. We observed greater cue-evoked mesolimbic dopamine release to options yielding the high-value reward even when rats preferred the option yielding the low-value reward. This result identifies a clear mismatch between the ordinal utility of the available options and the rank ordering of their cached values, thereby providing robust evidence that dopamine-associated cached values cannot be the sole determinant of choices in simple economic decision making.


Subject(s)
Decision Making , Dopamine/physiology , Animals , Dopamine/metabolism , Nucleus Accumbens/metabolism , Nucleus Accumbens/physiology , Rats , Rats, Sprague-Dawley , Reward
12.
J Neurosci ; 34(32): 10616-23, 2014 Aug 06.
Article in English | MEDLINE | ID: mdl-25100595

ABSTRACT

Rats emit ultrasonic vocalizations (USVs) that are thought to serve as situation-dependent affective signals and accomplish important communicative functions. In appetitive situations, rats produce 50 kHz USVs, whereas 22 kHz USVs occur in aversive situations. Reception of 50 kHz USVs induces social approach behavior, while 22 kHz USVs lead to freezing behavior. These opposite behavioral responses are paralleled by distinct brain activation patterns, with 50 kHz USVs, but not 22 kHz USVs, activating neurons in the nucleus accumbens (NAcc). The NAcc mediates appetitive behavior and is critically modulated by dopaminergic afferents that are known to encode the value of reward. Therefore, we hypothesized that 50 kHz USVs, but not 22 kHz USVs, elicit NAcc dopamine release. While recording dopamine signaling with fast-scan cyclic voltammetry, freely moving rats were exposed to playback of four acoustic stimuli via an ultrasonic speaker in random order: (1) 50 kHz USVs, (2) 22 kHz USVs, (3) time- and amplitude-matched white noise, and (4) background noise. Only presentation of 50 kHz USVs induced phasic dopamine release and elicited approach behavior toward the speaker. Both of these effects, neurochemical and behavioral, were most pronounced during initial playback, but then declined rapidly with subsequent presentations, indicating a close temporal relationship between the two measures. Moreover, the magnitudes of these effects during initial playback were significantly correlated. Collectively, our findings show that NAcc dopamine release encodes pro-social 50 kHz USVs, but not alarming 22 kHz USVs. Thus, our results support the hypothesis that these call types are processed in distinct neuroanatomical regions and establish a functional link between pro-social communicative signals and reward-related neurotransmission.


Subject(s)
Dopamine/metabolism , Nucleus Accumbens/metabolism , Social Behavior , Ultrasonics , Vocalization, Animal/physiology , Acoustic Stimulation , Animals , Appetitive Behavior , Electrochemistry , Orientation , Psychophysics , Rats , Spectrum Analysis
14.
Nature ; 490(7420): 402-6, 2012 Oct 18.
Article in English | MEDLINE | ID: mdl-22992525

ABSTRACT

Stressors motivate an array of adaptive responses ranging from 'fight or flight' to an internal urgency signal facilitating long-term goals. However, traumatic or chronic uncontrollable stress promotes the onset of major depressive disorder, in which acute stressors lose their motivational properties and are perceived as insurmountable impediments. Consequently, stress-induced depression is a debilitating human condition characterized by an affective shift from engagement of the environment to withdrawal. An emerging neurobiological substrate of depression and associated pathology is the nucleus accumbens, a region with the capacity to mediate a diverse range of stress responses by interfacing limbic, cognitive and motor circuitry. Here we report that corticotropin-releasing factor (CRF), a neuropeptide released in response to acute stressors and other arousing environmental stimuli, acts in the nucleus accumbens of naive mice to increase dopamine release through coactivation of the receptors CRFR1 and CRFR2. Remarkably, severe-stress exposure completely abolished this effect without recovery for at least 90 days. This loss of CRF's capacity to regulate dopamine release in the nucleus accumbens is accompanied by a switch in the reaction to CRF from appetitive to aversive, indicating a diametric change in the emotional response to acute stressors. Thus, the current findings offer a biological substrate for the switch in affect which is central to stress-induced depressive disorders.


Subject(s)
Appetitive Behavior/physiology , Avoidance Learning/physiology , Corticotropin-Releasing Hormone/metabolism , Nucleus Accumbens/metabolism , Stress, Psychological/metabolism , Animals , Appetitive Behavior/drug effects , Avoidance Learning/drug effects , Corticotropin-Releasing Hormone/pharmacology , Dopamine/metabolism , Male , Mice , Mice, Inbred C57BL , Nucleus Accumbens/physiopathology , Receptors, Corticotropin-Releasing Hormone/agonists , Receptors, Corticotropin-Releasing Hormone/antagonists & inhibitors , Receptors, Corticotropin-Releasing Hormone/deficiency , Receptors, Corticotropin-Releasing Hormone/metabolism , Signal Transduction/drug effects , Stress, Psychological/physiopathology
15.
Curr Opin Neurobiol ; 22(6): 1054-61, 2012 Dec.
Article in English | MEDLINE | ID: mdl-22749132

ABSTRACT

Environmental stimuli guide value-based decision making, but can do so through cognitive representation of outcomes or through general-incentive properties attributed to the cues themselves. We assert that these differences are conferred through the use of alternative associative structures differing in computational intensity. Using this framework, we review scientific evidence to discern the neural substrates of these assumed separable processes. We suggest that the contribution of the mesolimbic dopamine system to Pavlovian valuation is restricted to an affective system that is only updated through experiential feedback of stimulus-outcome pairing, whereas the orbitofrontal cortex contributes to an alternative system capable of inferential reasoning. Finally we discuss the interactions and convergence of these systems and their implications for decision making and its pathology.


Subject(s)
Afferent Pathways/physiology , Conditioning, Operant/physiology , Decision Making/physiology , Dopamine/physiology , Learning/physiology , Animals , Brain/physiology , Feedback, Physiological/physiology , Humans
16.
Biol Psychiatry ; 72(6): 476-82, 2012 Sep 15.
Article in English | MEDLINE | ID: mdl-22592057

ABSTRACT

BACKGROUND: Generalized social phobia (GSP) and generalized anxiety disorder (GAD) are both associated with emotion dysregulation. Research implicates dorsal anterior cingulate cortex in both explicit emotion regulation (EER) and top-down attentional control (TAC). Although studies have examined these processes in GSP or GAD, no work compares findings across the two disorders or examines functioning in cases comorbid for both disorders (GSP/GAD). Here we compare the neural correlates of EER and TAC in GSP, GAD, and GSP/GAD. METHODS: Medication-free adults with GSP (EER n = 19; TAC n = 18), GAD (EER n = 17; TAC n = 17), GSP/GAD (EER n = 17; TAC n = 15), and no psychopathology (EER n = 18; TAC n = 18) participated. During EER, individuals alternatively viewed and upregulated and downregulated responses to emotional pictures. During TAC, they performed an emotional Stroop task. RESULTS: For both tasks, significant group × condition interactions emerged in dorsal anterior cingulate cortex and parietal cortices. Healthy adults showed significantly increased recruitment during emotion regulation, relative to emotion-picture viewing. GAD, GSP, and GSP/GAD subjects showed no such increases, with all groups differing from healthy adults but not from each other. Evidence of emotion-related disorder-specificity emerged in medial prefrontal cortex and amygdala. This disorder-specific responding varied as a function of emotion content but not emotion-regulatory demands. CONCLUSIONS: GSP and GAD both involve reduced capacity for engaging emotion-regulation brain networks, whether explicitly or via TAC. A reduced ability to recruit regions implicated in top-down attention might represent a general risk factor for anxiety disorders.


Subject(s)
Anxiety Disorders/physiopathology , Attention/physiology , Emotions/physiology , Gyrus Cinguli/physiopathology , Phobic Disorders/physiopathology , Adult , Analysis of Variance , Comorbidity , Female , Humans , Magnetic Resonance Imaging , Male , Risk Factors , Stroop Test
17.
Am J Psychiatry ; 167(12): 1526-32, 2010 Dec.
Article in English | MEDLINE | ID: mdl-20889651

ABSTRACT

OBJECTIVE: Little is known about the neural underpinnings of generalized social phobia, which is defined by a persistent heightened fear of social disapproval. Using event-related functional MRI (fMRI), the authors examined whether the intent of an event, which mediates the neural response to social disapproval in healthy individuals, differentially affects response in generalized social phobia. METHOD: Sixteen patients with generalized social phobia and 16 healthy comparison subjects group-matched on age, gender, and IQ underwent fMRI scans while reading stories that involved neutral social events, unintentional social transgressions (e.g., choking on food at a party and coughing it up), or intentional social transgressions (e.g., disliking food at a party and spitting it out). RESULTS: Significant group-by-transgression interactions were observed in ventral regions of the medial prefrontal cortex. Healthy individuals tended to show increased blood-oxygen-level-dependent responses to intentional relative to unintentional transgressions. Patients with generalized social phobia, however, showed significantly increased responses to the unintentional transgressions. They also rated the unintentional transgressions as significantly more embarrassing than did the comparison subjects. Results also revealed significant group main effects in the amygdala and insula bilaterally, reflecting elevated generalized social phobia responses in these regions to all event types. CONCLUSIONS: These results further implicate the medial prefrontal cortex in the pathophysiology of generalized social phobia, specifically through its involvement in distorted self-referential processing. These results also further underscore the extended role of the amygdala and insula in the processing of social stimuli more generally in generalized social phobia.


Subject(s)
Emotions/physiology , Frontal Lobe/physiopathology , Phobic Disorders/physiopathology , Adult , Amygdala/physiopathology , Female , Humans , Magnetic Resonance Imaging/methods , Male , Self Concept
18.
Soc Cogn Affect Neurosci ; 5(2-3): 318-23, 2010 Jun.
Article in English | MEDLINE | ID: mdl-19822601

ABSTRACT

Representations of self are thought to be dynamically influenced by one's surroundings, including the culture one lives in. However, neuroimaging studies of self-representations have either ignored cultural influences or operationalized culture as country of origin. The present study used functional magnetic resonance imaging to examine the neural correlates of individual differences in interdependent self-construal. Participants rated whether trait adjectives applied to themselves or their mothers, or judged their valence or font. Findings indicated that individual differences in interdependent self-construal correlated positively with increased activation in the medial prefrontal cortex and posterior cingulated cortex when making judgments about one-self vs making judgments about one's mother. This suggests that those with greater interdependent self-construals may rely more upon episodic memory, reflected appraisals, or theory of mind to incorporate social information to make judgments about themselves.


Subject(s)
Culture , Mothers/psychology , Self Concept , Brain/physiology , Brain Mapping , Data Interpretation, Statistical , Female , Gyrus Cinguli/physiology , Humans , Individuality , Magnetic Resonance Imaging , Male , Memory/physiology , Prefrontal Cortex/physiology , Young Adult
19.
Soc Cogn Affect Neurosci ; 4(4): 409-16, 2009 Dec.
Article in English | MEDLINE | ID: mdl-19843618

ABSTRACT

A reward or punishment can seem better or worse depending on what else might have happened. Little is known, however, about how neural representations of an anticipated incentive might be influenced by the available alternatives. We used event-related FMRI to investigate the activation in the nucleus accumbens (NAcc), while we varied the available alternative incentives in a monetary incentive delay task. Some task blocks included only uncertain gains and losses; others included the same uncertain gains and losses intermixed with certain gains and losses. The availability of certain gains and losses increased NAcc activation for uncertain losses and decreased the difference between uncertain gains and losses. We suggest that this pattern of activation can result from reference point changes across blocks, and that the worst available loss may serve as an important anchor for NAcc activation. These findings imply that NAcc activation represents anticipated incentive value relative to the current context of available alternative gains and losses.


Subject(s)
Decision Making/physiology , Motivation/physiology , Nucleus Accumbens/physiology , Reward , Adolescent , Adult , Analysis of Variance , Brain Mapping , Cues , Female , Humans , Image Processing, Computer-Assisted , Magnetic Resonance Imaging , Male , Nucleus Accumbens/blood supply , Oxygen/blood , Reaction Time/physiology , Reinforcement Schedule , Time Factors , Young Adult
20.
Child Dev ; 80(4): 1232-42, 2009.
Article in English | MEDLINE | ID: mdl-19630904

ABSTRACT

Processing the self-relevance of information facilitates recall. Similarly, processing close-other-related information facilitates recall to a lesser degree than processing self-relevant information. This memory advantage may be viewed as an index of the degree to which the representation of self is differentiated from representations of close others. To test developmental hypotheses concerning the self, this study examined the relation of memory for self- and mother-referentially processed information in participants age 7-13 years (Experiment 1: N = 37; Experiment 2: N = 14). Memory for words encoded with reference to oneself increases with age, relative to memory for words encoded with reference to one's mother. When used as an individual difference measure, the difference in self versus mother memory correlates with regions of the rostral anterior cingulate associated with affective salience.


Subject(s)
Cognition/physiology , Frontal Lobe/physiology , Gyrus Cinguli/anatomy & histology , Self Concept , Adolescent , Adult , Affect , Child , Female , Humans , Male , Memory/physiology , Mental Recall , Mother-Child Relations , Semantics , Ventral Thalamic Nuclei/anatomy & histology , Vocabulary
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