A human brain atlas derived via n-cut parcellation of resting-state and task-based fMRI data.
暂无分享,去创建一个
Onder Hazaroglu | Keith A Bush | George Andrew James | G. James | K. Bush | Keith A. Bush | Onder Hazaroglu
[1] Jitendra Malik,et al. Normalized Cuts and Image Segmentation , 2000, IEEE Trans. Pattern Anal. Mach. Intell..
[2] S. Schiffmann,et al. Unraveling the Differential Functions and Regulation of Striatal Neuron Sub-Populations in Motor Control, Reward, and Motivational Processes , 2011, Front. Behav. Neurosci..
[3] S G Kim,et al. Functional activation in motor cortex reflects the direction and the degree of handedness. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[4] Hyoung F. Kim,et al. Basal ganglia circuits for reward value-guided behavior. , 2014, Annual review of neuroscience.
[5] Jonathan D. Power,et al. A Parcellation Scheme for Human Left Lateral Parietal Cortex , 2010, Neuron.
[6] Francois-Xavier Alario,et al. Distinct representations of phonemes, syllables, and supra-syllabic sequences in the speech production network , 2009, NeuroImage.
[7] James R. Booth,et al. Developmental changes in activation and effective connectivity in phonological processing , 2007, NeuroImage.
[8] John C Gore,et al. Task demand modulation of steady‐state functional connectivity to primary motor cortex , 2007, Human brain mapping.
[9] B. Balleine,et al. Human and Rodent Homologies in Action Control: Corticostriatal Determinants of Goal-Directed and Habitual Action , 2010, Neuropsychopharmacology.
[10] Michael S Beauchamp,et al. See me, hear me, touch me: multisensory integration in lateral occipital-temporal cortex , 2005, Current Opinion in Neurobiology.
[11] Rebecca Saxe,et al. Contributions of episodic retrieval and mentalizing to autobiographical thought: Evidence from functional neuroimaging, resting-state connectivity, and fMRI meta-analyses , 2014, NeuroImage.
[12] Marisa O. Hollinshead,et al. The organization of the human cerebral cortex estimated by intrinsic functional connectivity. , 2011, Journal of neurophysiology.
[13] Philip A. Kragel,et al. Hemodynamic signals of mixed messages during a social exchange , 2011, Neuroreport.
[14] Robert J. Zatorre,et al. Interacting Cortical and Basal Ganglia Networks Underlying Finding and Tapping to the Musical Beat , 2013, Journal of Cognitive Neuroscience.
[15] Peter T Fox,et al. Modulation of neural connectivity during tongue movement and reading , 2003, Human brain mapping.
[16] P. Skudlarski,et al. An fMRI study of the human cortical motor system response to increasing functional demands. , 1997, Magnetic resonance imaging.
[17] Xenophon Papademetris,et al. Groupwise whole-brain parcellation from resting-state fMRI data for network node identification , 2013, NeuroImage.
[18] C. Kilts,et al. Task-dependent recruitment of intrinsic brain networks reflects normative variance in cognition , 2014, Brain and behavior.
[19] Robert Pepperell,et al. What is a Human? , 1994, Intell. Tutoring Media.
[20] R W Cox,et al. AFNI: software for analysis and visualization of functional magnetic resonance neuroimages. , 1996, Computers and biomedical research, an international journal.
[21] Peter Stiers,et al. Unravelling the Intrinsic Functional Organization of the Human Lateral Frontal Cortex: A Parcellation Scheme Based on Resting State fMRI , 2012, The Journal of Neuroscience.
[22] David T. Jones,et al. Nonstationarity in the ‘resting brain's’ modular architecture , 2012, Alzheimer's & Dementia.
[23] Xiaoping Hu,et al. Simultaneous acquisition of gradient‐echo and asymmetric spin‐echo for single‐shot z‐shim: Z‐SAGA , 2004, Magnetic resonance in medicine.
[24] David T. Jones,et al. Non-Stationarity in the “Resting Brain’s” Modular Architecture , 2012, PloS one.
[25] Mark W. Woolrich,et al. Large-scale Probabilistic Functional Modes from resting state fMRI , 2015, NeuroImage.
[26] R Cameron Craddock,et al. A whole brain fMRI atlas generated via spatially constrained spectral clustering , 2012, Human brain mapping.
[27] Stephen M Smith,et al. Correspondence of the brain's functional architecture during activation and rest , 2009, Proceedings of the National Academy of Sciences.
[28] Jessica A. Grahn,et al. The role of the basal ganglia in learning and memory: Neuropsychological studies , 2009, Behavioural Brain Research.
[29] Jin Fan,et al. Common and distinct networks underlying reward valence and processing stages: A meta-analysis of functional neuroimaging studies , 2011, Neuroscience & Biobehavioral Reviews.
[30] D. Schacter,et al. The Brain's Default Network , 2008, Annals of the New York Academy of Sciences.
[31] Jeffrey C. Cooper,et al. Functional magnetic resonance imaging of reward prediction , 2005, Current opinion in neurology.