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19 results on '"Pimentel-Silva LR"'

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1. Between neurons and networks: investigating mesoscale brain connectivity in neurological and psychiatric disorders.

2. Magnetic resonance imaging evaluation of the disc morphology of temporomandibular joint in patients with severe hemophilia.

3. Exploring the impact of hippocampal sclerosis on white matter tracts and memory in individuals with mesial temporal lobe epilepsy.

4. Brain volumes and white matter diffusion across the adult lifespan in temporal lobe epilepsy.

5. Are we ready to define cognitive worsening in MS? How different cutoffs detect future cognitive worsening after six years of follow-up.

6. Superficial and deep white matter diffusion abnormalities in focal epilepsies.

7. Differences in structural and functional default mode network connectivity in amyloid positive mild cognitive impairment: a longitudinal study.

8. Inflammatory and neurotrophic factor plasma levels are related to epilepsy independently of etiology.

9. Hippocampal CA3 transcriptional modules associated with granule cell alterations and cognitive impairment in refractory mesial temporal lobe epilepsy patients.

10. Associations between cognitive and clinical disability across MS subtypes: The role of the underlying brain damage.

11. Transsylvian amygdalohippocampectomy for mesial temporal lobe epilepsy: Comparison of three different approaches.

12. Cognitive trajectories in relapsing-remitting multiple sclerosis: A longitudinal 6-year study.

13. Exploring the performance of outcome measures in MS for predicting cognitive and clinical progression in the following years.

14. Temporopolar amygdalohippocampectomy: seizure control and postoperative outcomes.

15. Interactions between in vivo neuronal-glial markers, side of hippocampal sclerosis, and pharmacoresponse in temporal lobe epilepsy.

16. Autonomic dysfunction in hereditary spastic paraplegia type 4.

17. MicroRNA hsa-miR-134 is a circulating biomarker for mesial temporal lobe epilepsy.

19. Complex network analysis of CA3 transcriptome reveals pathogenic and compensatory pathways in refractory temporal lobe epilepsy.

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