scholarly article | Q13442814 |
P356 | DOI | 10.1097/YCT.0000000000000557 |
P698 | PubMed publication ID | 30531398 |
P2093 | author name string | Andrew D Krystal | |
Richard D Weiner | |||
Edward C Coffey | |||
Katherine W Scangos | |||
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Effects of right unilateral electroconvulsive therapy on motor cortical excitability in depressive patients | Q46682804 | ||
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Medial prefrontal cortex generates frontal midline theta rhythm | Q48234430 | ||
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Global functional coupling of resting EEG rhythms is related to white-matter lesions along the cholinergic tracts in subjects with amnesic mild cognitive impairment | Q48306615 | ||
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Changes in seizure threshold over the course of electroconvulsive therapy affect therapeutic response and are detected by ictal EEG ratings. | Q48458519 | ||
Changes in brain function (quantitative EEG cordance) during placebo lead-in and treatment outcomes in clinical trials for major depression. | Q48459054 | ||
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Individualized alpha activity and frontal asymmetry in major depression. | Q48913380 | ||
Interhemispheric EEG coherence before and after partial callosotomy. | Q48930739 | ||
Severity of subcortical gray matter hyperintensity predicts ECT response in geriatric depression. | Q48931912 | ||
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Anterior cingulate activity as a predictor of degree of treatment response in major depression: evidence from brain electrical tomography analysis. | Q48965818 | ||
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Is resting anterior EEG alpha asymmetry a trait marker for depression? Findings for healthy adults and clinically depressed patients. | Q51083542 | ||
Relationships between EEG and clinical characteristics in major depressive disorder. | Q51211987 | ||
EEG default mode network in the human brain: spectral regional field powers. | Q51959885 | ||
Speed of response and remission in major depressive disorder with acute electroconvulsive therapy (ECT): a Consortium for Research in ECT (CORE) report. | Q51998421 | ||
The ictal EEG as a marker of adequate stimulus intensity with unilateral ECT | Q52020948 | ||
Quantitative EEG during seizures induced by electroconvulsive therapy: relations to treatment modality and clinical features. I. Global analyses. | Q52073570 | ||
Quantitative EEG in the prediction of antidepressant response to imipramine. | Q53984636 | ||
The ictal electroencephalogram as a marker for the efficacy of electroconvulsive therapy. | Q53995093 | ||
Subcortical hyperintensities on magnetic resonance imaging: Clinical correlates and prognostic significance in patients with severe depression | Q57244759 | ||
EEG manifestations during ECT: effects of electrode placement and stimulus intensity | Q70482115 | ||
Interrelation between changes in the EEG and psychopathology under pharmacotherapy for endogenous depression. A contribution to the predictor question | Q70722194 | ||
Effect of ECT treatment number on the ictal EEG | Q71439546 | ||
Seizure threshold in electroconvulsive therapy: I. Initial seizure threshold | Q71972133 | ||
Quantitative EEG during seizures induced by electroconvulsive therapy: relations to treatment modality and clinical features. II. Topographic analyses | Q73001348 | ||
The development and retrospective testing of an electroencephalographic seizure quality-based stimulus dosing paradigm with ECT | Q73789526 | ||
Pretreatment neurophysiologic function and ECT response in depression | Q80517668 | ||
P433 | issue | 2 | |
P921 | main subject | biomarker | Q864574 |
P304 | page(s) | 95-102 | |
P577 | publication date | 2019-06-01 | |
P1433 | published in | The Journal of Electroconvulsive Therapy | Q15749906 |
P1476 | title | An Electrophysiological Biomarker That May Predict Treatment Response to ECT | |
P478 | volume | 35 |
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