Emmanuel d’Incau | Neuroscience | Innovative Research Award

Innovative Research Award

Emmanuel d’Incau
University of Bordeaux, France

Emmanuel d’Incau
Affiliation University of Bordeaux
Country France
Scopus ID 55040695200
Documents 25
Citations 368
h-index 9
Subject Area Neuroscience
Event Health Scientists Awards
ORCID 0000-0002-4776-6121

Emmanuel d’Incau is a researcher affiliated with the University of Bordeaux whose scholarly work contributes to the advancement of neuroscience research. His publication record, citation impact, and interdisciplinary investigations reflect continued engagement in understanding neural mechanisms, brain function, and related clinical applications. The following profile summarizes his academic achievements, research contributions, publication activities, and suitability for recognition through the Innovative Research Award.[1]

Abstract

Emmanuel d’Incau has established a recognized research profile within neuroscience through investigations that contribute to understanding neural structure, function, and clinical relevance. His scholarly output demonstrates sustained engagement in evidence-based research, interdisciplinary collaboration, and scientific dissemination. With publications indexed in major academic databases and measurable citation influence, his work supports knowledge development across neuroscience-related domains. The combination of research productivity, scientific visibility, and commitment to advancing neurological understanding reflects the qualities associated with impactful academic scholarship. These accomplishments provide a strong basis for consideration within international scientific recognition programs and research excellence initiatives.[1][2]

Keywords

Neuroscience, Neural Mechanisms, Brain Function, Cognitive Neuroscience, Neurobiology, Clinical Neuroscience, Scientific Research, Neural Networks, Translational Research, Brain Health

Introduction

Neuroscience research plays an important role in understanding brain function and neurological health. Emmanuel d’Incau has contributed to this evolving field through peer-reviewed investigations and collaborative scholarship. His academic activities demonstrate dedication to generating evidence that advances scientific understanding and supports future research directions within neuroscience.[1]

Research Profile

Affiliated with the University of Bordeaux, Emmanuel d’Incau maintains an active scholarly profile characterized by 25 indexed publications, 368 citations, and an h-index of 9. His research portfolio demonstrates consistent participation in neuroscience investigations and knowledge dissemination through internationally recognized academic channels.[1]

Research Contributions

His contributions focus on advancing understanding of neurological processes through analytical and experimental research. By participating in interdisciplinary studies and collaborative scientific initiatives, he has helped generate findings that support broader discussions in neuroscience, neural function, and evidence-based clinical applications.[1][3]

Publications

The publication record of Emmanuel d’Incau includes peer-reviewed articles indexed by major scholarly databases. These works demonstrate sustained academic productivity and contribute to the growing body of neuroscience literature. Publications have attracted citations from the international research community, reflecting scholarly relevance and engagement.[1][4]

Research Impact

Citation metrics and academic visibility indicate meaningful influence within the neuroscience community. His research outputs have supported ongoing scholarly discussions and provided foundations for subsequent investigations. The measurable reach of his work demonstrates both scientific relevance and continued contribution to research advancement.[1]

Award Suitability

The Innovative Research Award recognizes individuals demonstrating scholarly excellence, innovation, and measurable academic impact. Emmanuel d’Incau’s publication achievements, citation performance, interdisciplinary collaborations, and contributions to neuroscience align with these evaluation principles, making him a suitable candidate for recognition within the Health Scientists Awards program.[1]

Conclusion

Emmanuel d’Incau’s academic profile reflects sustained commitment to neuroscience research, scholarly dissemination, and scientific collaboration. His publication record and research influence demonstrate meaningful contributions to the field, supporting his recognition as a researcher whose work contributes to ongoing progress in neuroscience and health-related science.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Emmanuel d’Incau, Author ID 55040695200. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=55040695200
  2. ORCID. (n.d.). Emmanuel d’Incau researcher profile.
    https://orcid.org/0000-0002-4776-6121
  3. ResearchGate. (n.d.). Emmanuel d’Incau publication and research overview.
    https://www.researchgate.net/profile/Emmanuel-Dincau/4
  4. Google Scholar. (n.d.). Emmanuel d’Incau – Citation Profile and Publication Metrics. Google Scholar.
    https://scholar.google.com/citations?user=2G2g06IAAAAJ&hl=fr

Leticia Peris | Neuroscience | Best Researcher Award

Dr. Leticia Peris | Neuroscience | Best Researcher Award 

Inserm researcher | Grenoble Institut of Neurosciences | France

Dr. Leticia Peris is a distinguished neuroscientist and cell biologist whose research focuses on uncovering the molecular mechanisms that regulate the neuronal cytoskeleton and its dysfunction in neurodegenerative diseases. She serves as an Inserm Research Scientist at the Grenoble Institute of Neurosciences (UGA–INSERM U1216, France), where her work has significantly advanced the understanding of tubulin post-translational modifications and their role in neuronal morphogenesis, synaptic integrity, and neurodegeneration. Dr. Peris made pioneering contributions by identifying the tubulin carboxypeptidases VASH1/2–SVBP complex and elucidating their importance in neuronal organization and neurodevelopmental disorders. Her research further demonstrated how dysregulated tubulin modifications contribute to synaptic degeneration in Alzheimer’s disease and revealed new mechanisms of L-Dopa–induced synaptotoxicity in Parkinson’s disease. With an extensive record of publications in high-impact journals, international collaborations, and innovative patents, her work bridges fundamental neuroscience and translational medicine. She actively collaborates with leading researchers across France, Argentina, Germany, and the United States, including teams at Columbia University, Boston Children’s Hospital, and Humboldt University. A member of several international scientific societies and editorial boards, Dr. Peris is also deeply engaged in ethical and ecological initiatives promoting responsible and sustainable scientific practices. Her ongoing projects aim to rejuvenate neuronal cytoskeleton function as a therapeutic strategy against neurodegeneration, making her a leading voice in cellular neurobiology and a key contributor to the global fight against Alzheimer’s and Parkinson’s diseases. She has 2741 citations from 36 documents with an h-index of 24.

Profiles:  Scopus | ORCID

Featured Publications

1. Zorgniotti, A., Sharma, A., Ramirez-Rios, S., Sanyal, C., Aleman, M., Ditamo, Y., Moutin, M. J., Bisig, C. G., & Peris, L. (2024). L-Dopa incorporation into tubulin alters microtubule dynamics and reduces dendritic spine invasion and synapse maintenance [Preprint].

2. Konietzny, A., Han, Y., Popp, Y., van Bommel, B., Sharma, A., Delagrange, P., Arbez, N., Moutin, M. J., Peris, L., & Mikhaylova, M. (2024). Efficient axonal transport of endolysosomes relies on the balanced ratio of microtubule tyrosination and detyrosination. Journal of Cell Science.

3. Konietzny, A., Peris, L., Han, Y., Popp, Y., van Bommel, B., Sharma, A., Delagrange, P., Arbez, N., Moutin, M. J., & Mikhaylova, M. (2023). Efficient axonal trafficking of endolysosomes depends on the balanced ratio of microtubule tyrosination and detyrosination [Preprint].

4. Peris, L. (2022). Crosstalk between acetylation and the tyrosination/detyrosination cycle of α-tubulin in Alzheimer’s disease. Frontiers in Cell and Developmental Biology.

5. Peris, L. (2022). Tubulin tyrosination regulates synaptic function and is disrupted in Alzheimer’s disease. Brain: A Journal of Neurology.

Dr. Leticia Peris’s research advances global neuroscience by uncovering cellular mechanisms that drive neurodegenerative diseases, paving the way for innovative therapeutic strategies. Her work bridges fundamental biology and translational medicine, contributing to improved brain health and societal well-being worldwide.