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1. Principal component analysis as an efficient method for capturing multivariate brain signatures of complex disorders-ENIGMA study in people with bipolar disorders and obesity.

2. Altered cortical synaptic lipid signaling leads to intermediate phenotypes of mental disorders

3. The neural signature of psychomotor disturbance in depression

4. Associations between white matter microstructure and cognitive decline in major depressive disorder versus controls in Germany: a prospective case-control cohort study

6. AgRP neurons control feeding behaviour at cortical synapses via peripherally derived lysophospholipids

8. Associations between white matter microstructure and cognitive decline in major depressive disorder versus controls in Germany: a prospective case-control cohort study

9. Principal component analysis as an efficient method for capturing multivariate brain signatures of complex disorders—ENIGMA study in people with bipolar disorders and obesity

10. Principal component analysis as an efficient method for capturing multivariate brain signatures of complex disorders—ENIGMA study in people with bipolar disorders and obesity

11. Lysophosphatidic Acid Receptors LPAR5 and LPAR2 Inversely Control Hydroxychloroquine-Evoked Itch and Scratching in Mice.

13. Replicability and Generalizability of Gray Matter Reductions in Major Depression: A Voxel-Based Investigation of 4021 Individuals

16. Synaptic phospholipids as a new target for cortical hyperexcitability and E/I balance in psychiatric disorders

17. A systematic evaluation of machine learning-based biomarkers for major depressive disorder across modalities

19. A Systematic Evaluation of Machine Learning-based Biomarkers for Major Depressive Disorder across Modalities

21. Correction: Synaptic phospholipids as a new target for cortical hyperexcitability and E/I balance in psychiatric disorders

23. Mutations in plasticity-related-gene-1 (PRG-1) protein contribute to hippocampal seizure susceptibility and modify epileptic phenotype.

24. Molecular cause and functional impact of altered synaptic lipid signaling due to a prg‐1 gene SNP

26. Inhibition of the enzyme autotaxin reduces cortical excitability and ameliorates the outcome in stroke

28. MHCII-independent [CD4.sup.+] T cells protect injured CNS neurons via IL-4

31. Inhibition of the enzyme autotaxin reduces cortical excitability and ameliorates the outcome in stroke

43. Impact of HMG-CoA reductase inhibition on brain pathology

44. Prevention of age-associated neuronal hyperexcitability with improved learning and attention upon knockout or antagonism of LPAR2

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