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Fernanda Palhano-Fontes

Universidade Federal do Rio Grande do Norte

54 papers in the library · 2,754 citations · publishing 0-2026

Papers

Inflammatory response to repeated subcutaneous esketamine in treatment-resistant depression: The role of baseline C-reactive protein.

Journal of affective disorders March 15, 2026 Patrícia Cavalcanti-Ribeiro, Lara Carvalho Araújo Melo De Souza, Vagner Deuel O de Tavares et al.

In a small open-label trial of 22 patients with treatment-resistant depression who received seven weekly subcutaneous doses of esketamine, those with elevated baseline C-reactive protein (CRP > 1 mg/L) showed significant reductions in CRP by week 4 and week 8, while patients without inflammation showed no change. By week 8, CRP levels in both groups were comparable. Although the inflammation group had a greater average reduction in depression severity (15.88 points on the MADRS scale versus 11.14 points), this difference was not statistically significant, and changes in CRP did not predict symptom improvement. Larger controlled studies are needed.

Information parity on cortical functional brain networks increases under psychedelic influences

arXiv Preprint Archive July 28, 2022 Aline Viol, Gandhi M. Viswanathan, Oleksandra Soldatkina et al.

The physical basis of consciousness remains an open question. Using complex network theory, the study compared resting-state functional brain networks of individuals before and after ingesting the psychedelic brew Ayahuasca. The researchers calculated pairwise information parity to quantify statistical symmetries between brain region connectivity across the entire network. They detected an increase in average information parity in brain networks under psychedelic influence. Notably, information parity between regions of the limbic system and frontal cortex was consistently higher for all individuals while under the influence.

Characterizing complex networks using Entropy-degree diagrams: unveiling changes in functional brain connectivity induced by Ayahuasca

arXiv Preprint Archive September 26, 2018 A. Viol, Fernanda Palhano-Fontes, Heloisa Onias et al.

A new network metric called geodesic entropy quantifies the Shannon entropy of the distance distribution from each node to all others, capturing the structural role of individual nodes in a network. Applied to functional brain networks of humans in two states of consciousness—ordinary waking and after ingestion of Ayahuasca—the metric distinguished the states. Brain networks under Ayahuasca showed, on average, larger geodesic entropy than those in the ordinary waking state. The authors suggest geodesic entropy is a useful tool for analyzing complex networks and may improve understanding of emergent behaviors such as self-organized criticality.

Shannon entropy of brain functional complex networks under the influence of the psychedelic Ayahuasca

arXiv Preprint Archive November 1, 2016 A. Viol, Fernanda Palhano-Fontes, Heloisa Onias et al.

Psychedelic Ayahuasca increases brain network complexity, supporting ancient wisdom about "mind expansion" with modern neuroscience. Brain scans revealed that this Amazonian brew creates more diverse neural connections while strengthening local brain networks. The changes in brain organization showed higher Shannon entropy, indicating more dynamic and flexible thought patterns during the psychedelic experience.