The Cuban Hereditary Ataxias Project: From Clinical Research to Neurotechnological Innovation

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References

1. Velázquez-Pérez L. Ataxias Hereditarias: Las Ataxias en Cuba: Biografías de un proyecto. Ed. Científico-Técnica. 2019. ISBN978-959-05-1178-3.

2. Velázquez-Pérez L, Rodríguez-Labrada R, González-Garcés Y, Vázquez-Mojena Y, Pérez-Rodríguez R, Ziemann U. Neurophysiological features in spinocerebellar ataxia type 2: Prospects for novel biomarkers. Clin Neurophysiol. 2022 Mar;135:1-12.

3. Miguel Cruz-Ramírez, Roberto Pérez-Rodríguez, and Velázquez-Pérez L-Pérez. A STEM Approach to Content Analysis Based on Abstracts from Scopus: The Case of Biomarkers. En: A Cross-Disciplinary Exploration of STEM. Selected Works From the XI Workshop on R&D+i and the 3rd International Workshop on STEM at EPS ORCID Springer Nature Switzerland AG 2025 Y. Yadir Torres et al. (Eds.): pp. 338-349, 2025.

4. Tania Cruz-Mariño, Yaimeé Vázquez-Mojena, Velázquez-Pérez L-Pérez, Yanetza González-Zaldívar, Raúl Aguilera-Rodríguez, Miguel Velázquez-Santos Annelié Estupiñán-Rodríguez, José Miguel Laffita-Mesa, Luis E. Almaguer-Mederos, Milena Paneque. SCA2 predictive testing in Cuba: challenging concepts and protocol evolution. JCommunity Genet, 2015. DOI 10.1007/s12687-015-0226-4.

5. Roberto Rodríguez Labrada, Nalia Canales Ochoa, Maria de Lourdes Galicia Polo, Edilia Cruz Rivas, Sandro Romanzetti, Arnoy Peña Acosta, Anneli. Estupiñán Rodr.guez, Yaime. Vázquez Mojena . Imis Dogan. Georg Auburger, Kathrin Reetz, Velázquez Pérez L. Structural Brain Correlates of Sleep Microstructure in Spinocerebellar Ataxia Type 2 and its Role on Clinical Phenotype. Cerebellum, 2024 Oct;23(5):1839-1847

6. Cabeza Ruiz R, · Velázquez Pérez L,·Pérez Rodríguez R , Reetz K. ConvNets for automatic detection of polyglutamine SCAs from brain. Review Article. MRIs: state of the art applications Medical & Biological Engineering & Computing https://doi.org/10.1007/s11517-022-02714-w.

7. Cabeza-Ruiz R, Velázquez-Pérez, L, Pérez-Rodríguez R Convolutional Neural Networks as Support Tools for Spinocerebellar Ataxia Detection from Magnetic Resonances. Progress in Artificial Intelligence and Pattern Recognition. ORCID Springer Nature Switzerland AG 2021 Y. Hernández Heredia et al. (Eds.): IWAIPR 2021, LNCS 13055, pp. 1–12, 2021.

8. Velázquez-Pérez L, Rodríguez-Labrada R, Gonzalez-Garcés Y, Carrillo-Rodes FJ, Rodríguez-Díaz JC, Vázquez-Mojena Y, Ziemann U, Auburger G, Horak F, Gomez C. Monitoring the progression of pre-ataxic gait in SCA2 with inertial sensors over four years. Cerebellum. 2026;25:42. doi: 10.1007/s12311-026-01976-6.

9. Rodríguez-Labrada R, González-Garcés Y, Carrillo-Rodes FJ, Rodríguez-Díaz JC, Vázquez-Mojena Y, Ziemann U, Auburger G, Horak F, Gomez C, Velázquez-Pérez L. Progression of gait ataxia in spinocerebellar ataxia type 2: clinical utility of digitally measured gait metrics. Cerebellum. 2025;24:184.

10. Velázquez-Pérez L, Rodríguez-Díaz JC, Rodríguez-Labrada R, et al. Neurorehabilitation Improves the Motor Features in Prodromal SCA2: A Randomized, Controlled Trial. Mov Disord. 2019;18(3):397-405

11. Rodríguez-Diaz JC, Velázquez-Pérez L, Rodríguez-Labrada R, et al. Neurorehabilitation Therapy in Spinocerebellar Ataxia Type 2: A 24-Week, Rater-Blinded, Randomized, Controlled Trial. Mov Disord 2018; 33(9):1481-1487.

Published

2026-09-29

How to Cite

Velázquez Pérez, L. C. (2026). The Cuban Hereditary Ataxias Project: From Clinical Research to Neurotechnological Innovation. Anales De La Academia De Ciencias De Cuba, 16, e3277. Retrieved from https://revistaccuba.sld.cu/index.php/revacc/article/view/3277