A Basal Forebrain-Cingulate Circuit in Macaques Decides It Is Time to Act
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M. Rushworth | Alessandro Bongioanni | J. Sallet | J. Aubry | L. Verhagen | D. Folloni | N. Khalighinejad | D. Attali | Davide Folloni | David Attali
[1] J. Krebs,et al. Foraging Theory , 2019 .
[2] Kim Butts Pauly,et al. Elimination of peripheral auditory pathway activation does not affect motor responses from ultrasound neuromodulation , 2019, Brain Stimulation.
[3] Bolton K. H. Chau,et al. The macaque anterior cingulate cortex translates counterfactual choice value into actual behavioral change , 2018, Nature Neuroscience.
[4] A. L. Allegra Mascaro,et al. Coordination of rapid cholinergic and dopaminergic signaling in striatum during spontaneous movement , 2019, eLife.
[5] Ilya E. Monosov,et al. Novelty, Salience, and Surprise Timing Are Signaled by Neurons in the Basal Forebrain , 2019, Current Biology.
[6] Stefan Teipel,et al. The corticotopic organization of the human basal forebrain as revealed by regionally selective functional connectivity profiles , 2018, Human brain mapping.
[7] Matthew F.S. Rushworth,et al. Manipulation of Subcortical and Deep Cortical Activity in the Primate Brain Using Transcranial Focused Ultrasound Stimulation , 2018, Neuron.
[8] M. Hasselmo,et al. Specific Basal Forebrain–Cortical Cholinergic Circuits Coordinate Cognitive Operations , 2018, The Journal of Neuroscience.
[9] J. Cunningham,et al. Different population dynamics in the supplementary motor area and motor cortex during reaching , 2018, Nature Communications.
[10] Jean-François Aubry,et al. Offline impact of transcranial focused ultrasound on cortical activation in primates , 2018, bioRxiv.
[11] K. Pauly,et al. Hearing out Ultrasound Neuromodulation , 2018, Neuron.
[12] Ross D. Markello,et al. Segregation of the human basal forebrain using resting state functional MRI , 2018, NeuroImage.
[13] Brian E. Russ,et al. The Basal Forebrain Regulates Global Resting-State fMRI Fluctuations , 2018, Neuron.
[14] R. Costa,et al. Dopamine neuron activity before action initiation gates and invigorates future movements , 2018, Nature.
[15] Jean-François Aubry,et al. Potential impact of thermal effects during ultrasonic neurostimulation: retrospective numerical estimation of temperature elevation in seven rodent setups , 2018, Physics in medicine and biology.
[16] T. Moore,et al. Exploration Disrupts Choice-Predictive Signals and Alters Dynamics in Prefrontal Cortex , 2017, Neuron.
[17] Mathias Pessiglione,et al. Primate ventromedial prefrontal cortex neurons continuously encode the willingness to engage in reward directed behavior , 2016, bioRxiv.
[18] Jacqueline Scholl,et al. Simultaneous representation of a spectrum of dynamically changing value estimates during decision making , 2017, Nature Communications.
[19] Bolton K. H. Chau,et al. Inverted activity patterns in ventromedial prefrontal cortex during value-guided decision-making in a less-is-more task , 2017, Nature Communications.
[20] Laurence T. Hunt,et al. Triple Dissociation of Attention and Decision Computations across Prefrontal Cortex , 2017, Nature Neuroscience.
[21] Z. Mainen,et al. Distinct Sources of Deterministic and Stochastic Components of Action Timing Decisions in Rodent Frontal Cortex , 2016, Neuron.
[22] Thomas Deffieux,et al. A 200–1380-kHz Quadrifrequency Focused Ultrasound Transducer for Neurostimulation in Rodents and Primates: Transcranial In Vitro Calibration and Numerical Study of the Influence of Skull Cavity , 2017, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control.
[23] P. Dayan,et al. Pharmacological Fingerprints of Contextual Uncertainty , 2016, PLoS biology.
[24] Timothy Edward John Behrens,et al. Value, search, persistence and model updating in anterior cingulate cortex , 2016, Nature Neuroscience.
[25] M. Ananth,et al. Basal Forebrain Cholinergic Circuits and Signaling in Cognition and Cognitive Decline , 2016, Neuron.
[26] S. Cavanagh,et al. Autocorrelation structure at rest predicts value correlates of single neurons during reward-guided choice , 2016, eLife.
[27] Nils Kolling,et al. Predictive decision making driven by multiple time-linked reward representations in the anterior cingulate cortex , 2016, Nature Communications.
[28] Benjamin Y Hayden,et al. Dorsal Anterior Cingulate Cortex: A Bottom-Up View. , 2016, Annual review of neuroscience.
[29] M. Howe,et al. Rapid signaling in distinct dopaminergic axons during locomotion and reward , 2016, Nature.
[30] Emmanuel Procyk,et al. Specific frontal neural dynamics contribute to decisions to check , 2016, Nature Communications.
[31] Frederic M. Stoll,et al. The Effects of Cognitive Control and Time on Frontal Beta Oscillations. , 2016, Cerebral cortex.
[32] Daniel Llano,et al. Thermal Regulation of the Brain—An Anatomical and Physiological Review for Clinical Neuroscientists , 2016, Front. Neurosci..
[33] Timothy E. J. Behrens,et al. Capturing the temporal evolution of choice across prefrontal cortex , 2015, eLife.
[34] D. Bates,et al. Linear Mixed-Effects Models using 'Eigen' and S4 , 2015 .
[35] Matthew F.S. Rushworth,et al. Contrasting Roles for Orbitofrontal Cortex and Amygdala in Credit Assignment and Learning in Macaques , 2015, Neuron.
[36] Shi-Chieh Lin,et al. Basal forebrain neuronal inhibition enables rapid behavioral stopping , 2015, Nature Neuroscience.
[37] M. Husain,et al. Reward Pays the Cost of Noise Reduction in Motor and Cognitive Control , 2015, Current Biology.
[38] Elena A. Allen,et al. Acetylcholine Mediates Behavioral and Neural Post-Error Control , 2015, Current Biology.
[39] Ilya E. Monosov,et al. Neurons in the Primate Medial Basal Forebrain Signal Combined Information about Reward Uncertainty, Value, and Punishment Anticipation , 2015, The Journal of Neuroscience.
[40] M. Rushworth,et al. Connectivity reveals relationship of brain areas for reward-guided learning and decision making in human and monkey frontal cortex , 2015, Proceedings of the National Academy of Sciences.
[41] Zachary F Mainen,et al. Neural antecedents of self-initiated actions in secondary motor cortex , 2014, Nature Neuroscience.
[42] Wim Vanduffel,et al. The Retinotopic Organization of Macaque Occipitotemporal Cortex Anterior to V4 and Caudoventral to the Middle Temporal (MT) Cluster , 2014, The Journal of Neuroscience.
[43] John M. Pearson,et al. Decision Making: The Neuroethological Turn , 2014, Neuron.
[44] Shi-Chieh Lin,et al. Motivational Salience Signal in the Basal Forebrain Is Coupled with Faster and More Precise Decision Speed , 2014, PLoS biology.
[45] M. Greicius,et al. The Will to Persevere Induced by Electrical Stimulation of the Human Cingulate Gyrus , 2013, Neuron.
[46] Brian B. Avants,et al. Explicit B-spline regularization in diffeomorphic image registration , 2013, Front. Neuroinform..
[47] M. Shadlen,et al. Decision Making as a Window on Cognition , 2013, Neuron.
[48] Mark Jenkinson,et al. The minimal preprocessing pipelines for the Human Connectome Project , 2013, NeuroImage.
[49] Adam G. Thomas,et al. The Organization of Dorsal Frontal Cortex in Humans and Macaques , 2013, The Journal of Neuroscience.
[50] Rogier B Mars,et al. Connectivity profiles reveal the relationship between brain areas for social cognition in human and monkey temporoparietal cortex , 2013, Proceedings of the National Academy of Sciences.
[51] A. Hayes. Introduction to Mediation, Moderation, and Conditional Process Analysis: A Regression-Based Approach , 2013 .
[52] Mattias P. Karlsson,et al. Network Resets in Medial Prefrontal Cortex Mark the Onset of Behavioral Uncertainty , 2012, Science.
[53] Mark W. Woolrich,et al. FSL , 2012, NeuroImage.
[54] Timothy E. J. Behrens,et al. Tools of the trade: psychophysiological interactions and functional connectivity. , 2012, Social cognitive and affective neuroscience.
[55] Mickael Tanter,et al. Attenuation, scattering, and absorption of ultrasound in the skull bone. , 2011, Medical physics.
[56] Aki Pulkkinen,et al. Simulations and measurements of transcranial low-frequency ultrasound therapy: skull-base heating and effective area of treatment , 2011, Physics in medicine and biology.
[57] John M. Pearson,et al. Neuronal basis of sequential foraging decisions in a patchy environment , 2011, Nature Neuroscience.
[58] Simon Farrell,et al. Computational Modeling in Cognition: Principles and Practice , 2010 .
[59] O. Hikosaka. The habenula: from stress evasion to value-based decision-making , 2010, Nature Reviews Neuroscience.
[60] R. Andersen,et al. Space representation for eye movements is more contralateral in monkeys than in humans , 2010, Proceedings of the National Academy of Sciences.
[61] John G. Lynch,et al. Reconsidering Baron and Kenny: Myths and Truths about Mediation Analysis , 2010 .
[62] Jonathan D. Wallis,et al. Neurons in the Frontal Lobe Encode the Value of Multiple Decision Variables , 2009, Journal of Cognitive Neuroscience.
[63] W. Vanduffel,et al. Visual Field Map Clusters in Macaque Extrastriate Visual Cortex , 2009, The Journal of Neuroscience.
[64] David A. Balota,et al. Beyond mean response latency: Response time distributional analyses of semantic priming , 2008 .
[65] H. Seo,et al. Temporal Filtering of Reward Signals in the Dorsal Anterior Cingulate Cortex during a Mixed-Strategy Game , 2007, The Journal of Neuroscience.
[66] O. Hikosaka,et al. Lateral habenula as a source of negative reward signals in dopamine neurons , 2007, Nature.
[67] B T Cox,et al. k-space propagation models for acoustically heterogeneous media: application to biomedical photoacoustics. , 2007, The Journal of the Acoustical Society of America.
[68] Justin L. Vincent,et al. Intrinsic functional architecture in the anaesthetized monkey brain , 2007, Nature.
[69] P. Dayan,et al. Tonic dopamine: opportunity costs and the control of response vigor , 2007, Psychopharmacology.
[70] Timothy E. J. Behrens,et al. Optimal decision making and the anterior cingulate cortex , 2006, Nature Neuroscience.
[71] R. Passingham,et al. The functions of the medial premotor cortex , 2004, Experimental Brain Research.
[72] M Tanter,et al. Experimental demonstration of noninvasive transskull adaptive focusing based on prior computed tomography scans. , 2003, The Journal of the Acoustical Society of America.
[73] Y. Miyashita,et al. Functional MRI of Macaque Monkeys Performing a Cognitive Set-Shifting Task , 2002, Science.
[74] Stephen M. Smith,et al. Temporal Autocorrelation in Univariate Linear Modeling of FMRI Data , 2001, NeuroImage.
[75] H. Barbas,et al. Neural interaction between the basal forebrain and functionally distinct prefrontal cortices in the rhesus monkey , 2001, Neuroscience.
[76] S. Andrews,et al. Distinguishing common and task-specific processes in word identification: a matter of some moment? , 2001, Journal of experimental psychology. Learning, memory, and cognition.
[77] M. Schemper,et al. Predictive Accuracy and Explained Variation in Cox Regression , 2000, Biometrics.
[78] H. H. Pennes. Analysis of tissue and arterial blood temperatures in the resting human forearm. 1948. , 1948, Journal of applied physiology.
[79] Anthony S. Bryk,et al. Hierarchical Linear Models: Applications and Data Analysis Methods , 1992 .
[80] Francis A. Duck,et al. Physical properties of tissue : a comprehensive reference book , 1990 .
[81] R. Duncan Luce,et al. Response Times: Their Role in Inferring Elementary Mental Organization , 1986 .
[82] A. Levey,et al. Cholinergic innervation of cortex by the basal forebrain: Cytochemistry and cortical connections of the septal area, diagonal band nuclei, nucleus basalis (Substantia innominata), and hypothalamus in the rhesus monkey , 1983, The Journal of comparative neurology.
[83] F Dunn,et al. Ultrasonic absorption and attenuation in mammalian tissues. , 1979, Ultrasound in medicine & biology.
[84] E. Charnov. Optimal foraging, the marginal value theorem. , 1976, Theoretical population biology.