Search Results - "Stüber, D"

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  1. 1

    Overlapping Brain Circuits for Homeostatic and Hedonic Feeding by Rossi, Mark A., Stuber, Garret D.

    Published in Cell metabolism (09-01-2018)
    “…Central regulation of food intake is a key mechanism contributing to energy homeostasis. Many neural circuits that are thought to orchestrate feeding behavior…”
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    Journal Article
  2. 2

    Activation of lateral habenula inputs to the ventral midbrain promotes behavioral avoidance by Stamatakis, Alice M, Stuber, Garret D

    Published in Nature neuroscience (01-08-2012)
    “…The projection from the lateral habenula (LHb) to the rostromedial tegmental nucleus (RMTg) transmits negative reward–related information. Here the authors…”
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  3. 3

    Activation of VTA GABA Neurons Disrupts Reward Consumption by van Zessen, Ruud, Phillips, Jana L., Budygin, Evgeny A., Stuber, Garret D.

    Published in Neuron (Cambridge, Mass.) (22-03-2012)
    “…The activity of ventral tegmental area (VTA) dopamine (DA) neurons promotes behavioral responses to rewards and environmental stimuli that predict them. VTA…”
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  4. 4

    Synaptic and Behavioral Profile of Multiple Glutamatergic Inputs to the Nucleus Accumbens by Britt, Jonathan P., Benaliouad, Faiza, McDevitt, Ross A., Stuber, Garret D., Wise, Roy A., Bonci, Antonello

    Published in Neuron (Cambridge, Mass.) (21-11-2012)
    “…Excitatory afferents to the nucleus accumbens (NAc) are thought to facilitate reward seeking by encoding reward-associated cues. Selective activation of…”
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  5. 5

    Visualizing Hypothalamic Network Dynamics for Appetitive and Consummatory Behaviors by Jennings, Joshua H., Ung, Randall L., Resendez, Shanna L., Stamatakis, Alice M., Taylor, Johnathon G., Huang, Jonathan, Veleta, Katie, Kantak, Pranish A., Aita, Megumi, Shilling-Scrivo, Kelson, Ramakrishnan, Charu, Deisseroth, Karl, Otte, Stephani, Stuber, Garret D.

    Published in Cell (29-01-2015)
    “…Optimally orchestrating complex behavioral states, such as the pursuit and consumption of food, is critical for an organism’s survival. The lateral…”
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  6. 6

    The Inhibitory Circuit Architecture of the Lateral Hypothalamus Orchestrates Feeding by Jennings, Joshua H., Rizzi, Giorgio, Stamatakis, Alice M., Ung, Randall L., Stuber, Garret D.

    “…The growing prevalence of overeating disorders is a key contributor to the worldwide obesity epidemic. Dysfunction of particular neural circuits may trigger…”
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  7. 7
  8. 8

    Lateral hypothalamic circuits for feeding and reward by Stuber, Garret D, Wise, Roy A

    Published in Nature neuroscience (01-02-2016)
    “…Stuber and Wise review the role of the lateral hypothalamic area (LHA) in generating motivated behaviors related to feeding and reward processing. Classic…”
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  9. 9

    Transcriptional and Spatial Resolution of Cell Types in the Mammalian Habenula by Hashikawa, Yoshiko, Hashikawa, Koichi, Rossi, Mark A., Basiri, Marcus L., Liu, Yuejia, Johnston, Nathan L., Ahmad, Omar R., Stuber, Garret D.

    Published in Neuron (Cambridge, Mass.) (03-06-2020)
    “…The habenula complex is appreciated as a critical regulator of motivated and pathological behavioral states via its output to midbrain nuclei. Despite this,…”
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  10. 10

    Similar roles of substantia nigra and ventral tegmental dopamine neurons in reward and aversion by Ilango, Anton, Kesner, Andrew J, Keller, Kristine L, Stuber, Garret D, Bonci, Antonello, Ikemoto, Satoshi

    Published in The Journal of neuroscience (15-01-2014)
    “…Dopamine neurons in the ventral tegmental area (VTA) are implicated in affective functions. However, it is unclear to what extent dopamine neurons in…”
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  11. 11

    Prefrontal cortex output circuits guide reward seeking through divergent cue encoding by Otis, James M., Namboodiri, Vijay M. K., Matan, Ana M., Voets, Elisa S., Mohorn, Emily P., Kosyk, Oksana, McHenry, Jenna A., Robinson, J. Elliott, Resendez, Shanna L., Rossi, Mark A., Stuber, Garret D.

    Published in Nature (London) (02-03-2017)
    “…The prefrontal cortex is a critical neuroanatomical hub for controlling motivated behaviours across mammalian species 1 , 2 , 3 . In addition to intra-cortical…”
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  12. 12

    Efficient and accurate extraction of in vivo calcium signals from microendoscopic video data by Zhou, Pengcheng, Resendez, Shanna L, Rodriguez-Romaguera, Jose, Jimenez, Jessica C, Neufeld, Shay Q, Giovannucci, Andrea, Friedrich, Johannes, Pnevmatikakis, Eftychios A, Stuber, Garret D, Hen, Rene, Kheirbek, Mazen A, Sabatini, Bernardo L, Kass, Robert E, Paninski, Liam

    Published in eLife (22-02-2018)
    “…In vivo calcium imaging through microendoscopic lenses enables imaging of previously inaccessible neuronal populations deep within the brains of freely moving…”
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  13. 13
  14. 14

    A Distributed Neural Code in the Dentate Gyrus and in CA1 by Stefanini, Fabio, Kushnir, Lyudmila, Jimenez, Jessica C., Jennings, Joshua H., Woods, Nicholas I., Stuber, Garret D., Kheirbek, Mazen A., Hen, René, Fusi, Stefano

    Published in Neuron (Cambridge, Mass.) (19-08-2020)
    “…Neurons are often considered specialized functional units that encode a single variable. However, many neurons are observed to respond to a mix of disparate…”
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  15. 15

    Locus coeruleus to basolateral amygdala noradrenergic projections promote anxiety-like behavior by McCall, Jordan G, Siuda, Edward R, Bhatti, Dionnet L, Lawson, Lamley A, McElligott, Zoe A, Stuber, Garret D, Bruchas, Michael R

    Published in eLife (14-07-2017)
    “…Increased tonic activity of locus coeruleus noradrenergic (LC-NE) neurons induces anxiety-like and aversive behavior. While some information is known about the…”
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  16. 16

    Excitatory transmission from the amygdala to nucleus accumbens facilitates reward seeking by Stuber, Garret D., Sparta, Dennis R., Stamatakis, Alice M., van Leeuwen, Wieke A., Hardjoprajitno, Juanita E., Cho, Saemi, Tye, Kay M., Kempadoo, Kimberly A., Zhang, Feng, Deisseroth, Karl, Bonci, Antonello

    Published in Nature (London) (21-07-2011)
    “…Brain function during reward seeking Interactions between the basolateral amygdala (BLA) and nucleus accumbens (NAc) are involved in a number of…”
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  17. 17

    Considerations when using cre-driver rodent lines for studying ventral tegmental area circuitry by Stuber, Garret D, Stamatakis, Alice M, Kantak, Pranish A

    Published in Neuron (Cambridge, Mass.) (21-01-2015)
    “…The use of Cre-driver rodent lines for targeting ventral tegmental area (VTA) cell types has generated important and novel insights into how precise…”
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  18. 18

    Hormonal gain control of a medial preoptic area social reward circuit by McHenry, Jenna A, Otis, James M, Rossi, Mark A, Robinson, J Elliott, Kosyk, Oksana, Miller, Noah W, McElligott, Zoe A, Budygin, Evgeny A, Rubinow, David R, Stuber, Garret D

    Published in Nature neuroscience (01-03-2017)
    “…Social behaviors require neural circuits to process social cues and orchestrate motivational states. This study identifies a subpopulation of hypothalamic…”
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  19. 19

    Phasic Firing in Dopaminergic Neurons Is Sufficient for Behavioral Conditioning by Tsai, Hsing-Chen, Zhang, Feng, Adamantidis, Antoine, Stuber, Garret D, Bonci, Antonello, de Lecea, Luis, Deisseroth, Karl

    “…Natural rewards and drugs of abuse can alter dopamine signaling, and ventral tegmental area (VTA) dopaminergic neurons are known to fire action potentials…”
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  20. 20

    Optogenetic interrogation of dopaminergic modulation of the multiple phases of reward-seeking behavior by Adamantidis, Antoine R, Tsai, Hsing-Chen, Boutrel, Benjamin, Zhang, Feng, Stuber, Garret D, Budygin, Evgeny A, Touriño, Clara, Bonci, Antonello, Deisseroth, Karl, de Lecea, Luis

    Published in The Journal of neuroscience (27-07-2011)
    “…Phasic activation of dopaminergic neurons is associated with reward-predicting cues and supports learning during behavioral adaptation. While noncontingent…”
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