Publications

Export 782 results:
2024
Blenkmann AOmar, Leske SLiliana, Llorens A, Lin JJ, Chang EF, Brunner P, et al.. Anatomical registration of intracranial electrodes. Robust model-based localization and deformable smooth brain-shift compensation methods. Journal of Neuroscience Methods. 2024;404:110056.
Blenkmann AOmar, Leske SLiliana, Llorens A, Lin JJ, Chang EF, Brunner P, et al.. Anatomical registration of intracranial electrodes. Robust model-based localization and deformable smooth brain-shift compensation methods. J Neurosci Methods. 2024;404:110056.
Hardesty RL, Motjabavi H, Gemoets DE, Wolpaw JR. Bidirectional locomotion induces unilateral limb adaptations. bioRxiv. 2024;.
Schiff ND, Diringer M, Diserens K, Edlow BL, Gosseries O, N Hill J, et al.. Brain-Computer Interfaces for Communication in Patients with Disorders of Consciousness: A Gap Analysis and Scientific Roadmap. Neurocrit Care. 2024;.
Trevino G, Lee JJ, Shimony JS, Luckett PH, Leuthardt EC. Complexity organization of resting-state functional-MRI networks. Hum Brain Mapp. 2024;45(12):e26809.
Cross ZR, Gray SM, Dede AJO, Rivera YM, Yin Q, Vahidi P, et al.. The development of aperiodic neural activity in the human brain. bioRxiv. 2024;.
Tan G, Adams J, Donovan K, Demarest P, Willie JT, Brunner P, et al.. Does vibrotactile stimulation of the auricular vagus nerve enhance working memory? A behavioral and physiological investigation. Brain Stimulation. 2024;17:460–468.
Tan G, Adams J, Donovan K, Demarest P, Willie JT, Brunner P, et al.. Does vibrotactile stimulation of the auricular vagus nerve enhance working memory? A behavioral and physiological investigation. Brain Stimul. 2024;17(2):460-468.
Tan G, Adams J, Donovan K, Demarest P, Willie JT, Brunner P, et al.. Does Vibrotactile Stimulation of the Auricular Vagus Nerve Enhance Working Memory? A Behavioral and Physiological Investigation. bioRxiv. 2024;.
Tan G, Huguenard AL, Donovan KM, Demarest P, Liu X, Li Z, et al.. The effect of transcutaneous auricular vagus nerve stimulation on cardiovascular function in subarachnoid hemorrhage patients: a safety study. medRxiv. 2024;.
Xie T, Adamek M, Cho H, Adamo MA, Ritaccio AL, Willie JT, et al.. Graded decisions in the human brain. Nat Commun. 2024;15(1):4308.
Xie T, Adamek M, Cho H, Adamo MA, Ritaccio AL, Willie JT, et al.. Graded decisions in the human brain. Nature communications. 2024;15:4308.
Pedersen NP, Raghu A, Shivamurthy VKumar N, Chern JJ, Gross RE, Willie JT, et al.. The involvement of the piriform cortex in non-lesional temporal lobe epilepsy: an uncommon component of the epileptogenic network. Brain Commun. 2024;6(4):fcae179.
Putzolu M, Samogin J, Bonassi G, Cosentino C, Mezzarobba S, Botta A, et al.. Motor imagery ability scores are related to cortical activation during gait imagery. Sci Rep. 2024;14(1):5207.
Wang Y, Chen Y, Chen L, Herron BJ, Chen XYang, Wolpaw JR. Motor learning changes the axon initial segment of the spinal motoneuron. J Physiol. 2024;602(9):2107-2126.
Blanpain LT, Cole ER, Chen E, Park JK, Walelign MY, Gross RE, et al.. Multisensory flicker modulates widespread brain networks and reduces interictal epileptiform discharges. Nat Commun. 2024;15(1):3156.
Cao R, Wang J, Brunner P, Willie JT, Li X, Rutishauser U, et al.. Neural mechanisms of face familiarity and learning in the human amygdala and hippocampus. Cell reports. 2024;43.
Cao R, Wang J, Brunner P, Willie JT, Li X, Rutishauser U, et al.. Neural mechanisms of face familiarity and learning in the human amygdala and hippocampus. Cell Rep. 2024;43(1):113520.
Regev TI, Casto C, Hosseini EA, Adamek M, Ritaccio AL, Willie JT, et al.. Neural populations in the language network differ in the size of their temporal receptive windows. Nature Human Behaviour. 2024;8:1924–1942.
Huguenard AL, Tan G, Johnson GW, Adamek M, Coxon AT, Kummer TT, et al.. Non-invasive Auricular Vagus nerve stimulation for Subarachnoid Hemorrhage (NAVSaH): Protocol for a prospective, triple-blinded, randomized controlled trial. medRxiv. 2024;.

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