1. Kankozha, M.K. (2010, January 22–23). Erythrocyte glucose transport during experimental hypoxia. Proceedings of the Materials of the International Scientific and Practical Conference “Fundamental Biomedical Sciences and Practical Health Care”, St. Petersburg, Russia. Available online: http://www.rusnauka.com/12_ENXXI_2010/Medecine/64619.doc.htm.
2. The use of nanomechanical sensor for studying the morphofunctional properties of lymphocytes from healthy donors and patients with chronic lymphoblastic leukemia;Skorkina;Cell Technol. Biol. Med.,2012
3. Dinarelli, S., Longo, G., Germanova-Taneva, S., Todinova, S., Krumova, S., and Girasole, M. (2022). Surprising Structural and Functional Properties of Favism Erythrocytes Are Linked to Special Metabolic Regulation: A Cell Aging Study. Int. J. Mol. Sci., 24.
4. Marcuello, C., Frempong, G.A., Balsera, M., Medina, M., and Lostao, A. (2021). Atomic Force Microscopy to Elicit Conformational Transitions of Ferredoxin-Dependent Flavin Thioredoxin Reductases. Antioxidants, 10.
5. Panyusheva, E.S., Bodryagina, A.M., Sonina, M.V., Ivanova, I.A., and Stolbovskaya, O.V. (2019, January 01). Investigation of the Structural and Functional State of Erythrocytes by Atomic Force Spectroscopy. Available online: www.scienceforum.ru/2013/pdf/3697.pdf.