2022
NCOG-46. PERSONALIZED, PARCEL-GUIDED RTMS FOR NEURO-REHABILITATION AFTER TUMOR NEUROSURGERY: SAFETY AND PROOF OF CONCEPT
Yeung J, Tang J, Holle J, Teo C, Sughrue M. NCOG-46. PERSONALIZED, PARCEL-GUIDED RTMS FOR NEURO-REHABILITATION AFTER TUMOR NEUROSURGERY: SAFETY AND PROOF OF CONCEPT. Neuro-Oncology 2022, 24: vii207-vii208. DOI: 10.1093/neuonc/noac209.797.Peer-Reviewed Original ResearchRepetitive transcranial magnetic stimulationUpper Extremity Function ScaleLower Extremity Functional ScaleRTMS treatmentBeck Depression InventoryNeurological disordersDepression InventoryNeuropsychiatric disordersNeuro-rehabilitationPost-operative neurological deficitsTranscranial magnetic stimulationQuality of lifeNon-significant trendMultiple cortical targetsFunctional connectivity approachNon-invasive toolEuroQol qualityNeuropsychiatric questionnaireTumor neurosurgeryNeurological deficitsRetrospective reviewPineal cystsPrimary tumorSurgical removalTumor resectionImproving quality of life post-tumor craniotomy using personalized, parcel-guided TMS: safety and proof of concept
Tang S, Holle J, Lesslar O, Teo C, Sughrue M, Yeung J. Improving quality of life post-tumor craniotomy using personalized, parcel-guided TMS: safety and proof of concept. Journal Of Neuro-Oncology 2022, 160: 413-422. PMID: 36308593, DOI: 10.1007/s11060-022-04160-y.Peer-Reviewed Original ResearchConceptsRepetitive transcranial magnetic stimulationNeuro-cognitive dysfunctionRTMS treatmentBeck Depression InventoryFunctional deficitsNeurological disordersDepression InventoryPost-operative depressionTranscranial magnetic stimulationNeuro-cognitive deficitsNeuro-cognitive functionsMultiple cortical targetsFunctional connectivity approachNon-invasive toolEuroQol qualityNeuropsychiatric questionnaireResultsNine patientsAdverse eventsRetrospective reviewSurgical removalTMS treatmentCortical targetsShort-term memory difficultiesBrain tumorsDepressive symptomsFunctional Connectivity of the Chemosenses: A Review
Farruggia MC, Pellegrino R, Scheinost D. Functional Connectivity of the Chemosenses: A Review. Frontiers In Systems Neuroscience 2022, 16: 865929. PMID: 35813269, PMCID: PMC9257046, DOI: 10.3389/fnsys.2022.865929.Peer-Reviewed Original ResearchFunctional connectivityConnectivity approachBrain-behavior relationshipsDynamic causal modelingFunctional connectivity approachSeed-based functional connectivityEffective connectivity approachStructural equation modelingTask-based paradigmsCognitive neuroscienceNeural correlatesPsychophysiological interactionStimulus qualityCausal modelingEquation modelingOlfactory paradigmBrain regionsChemosensory perceptionRelative dearthPathways of communication
2017
A Submodular Approach to Create Individualized Parcellations of the Human Brain
Salehi M, Karbasi A, Scheinost D, Constable R. A Submodular Approach to Create Individualized Parcellations of the Human Brain. Lecture Notes In Computer Science 2017, 10433: 478-485. DOI: 10.1007/978-3-319-66182-7_55.Peer-Reviewed Original ResearchIndividualized parcellationGroup-level parcellationFunctional connectivity approachInter-individual variability
2010
Face-Specific Resting Functional Connectivity between the Fusiform Gyrus and Posterior Superior Temporal Sulcus
Turk-Browne NB, Norman-Haignere SV, McCarthy G. Face-Specific Resting Functional Connectivity between the Fusiform Gyrus and Posterior Superior Temporal Sulcus. Frontiers In Human Neuroscience 2010, 4: 176. PMID: 21151362, PMCID: PMC2995581, DOI: 10.3389/fnhum.2010.00176.Peer-Reviewed Original ResearchPosterior superior temporal sulcusSuperior temporal sulcusFusiform gyrusTemporal sulcusFunctional connectivityFace-processing networkFunctional connectivity approachFace processingFace stimuliVisual processingSpecific brain regionsBOLD timeseriesTask processingProcessing networkVisual inputConnectivity approachBrain regionsGyrusPeriods of restSulcusProcessingPattern analysisAdditional regionsFaceFMRI
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