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September 7, 2026
Biologists Discover 'Molecular Fingerprint' of Preeclampsia
Researchers at HSE University employed a new method to model hypoxia in placental cells during pregnancies complicated by preeclampsia and identified molecular markers of tissue hypoxia. Since hypoxia is one of the key mechanisms underlying preeclampsia, these findings are important for a more accurate and timely diagnosis of the disease and for the development of effective treatment methods. The paper has been published in Placenta.
September 7, 2026
‘Speech, Facial Expressions, and Gestures Cannot Lie
Would you like to know whether a speaker’s trembling voice or an accidental gesture can give them away? At HSE University in Nizhny Novgorod, researchers are developing an algorithm that analyses speech, facial expressions, and gestures, and determines whether information is truthful with 92% accuracy. The project has applications ranging from forensic examination and bank recruitment to fundamental research. Anna Khomenko, head of the research group and Senior Research Fellow at the Centre for Language and Brain at the HSE Faculty of Humanities in Nizhny Novgorod, explains how students and researchers are working together to create a corpus of video recordings, train a classifier, and prepare to introduce computer vision technology.
September 4, 2026
Time to Showcase Your Research: Applications Are Now Open for Student Research Paper Competition 2026
Taking part in the Student Research Paper Competition (SRPC) gives you an opportunity to present your research to experts, receive an independent assessment, and determine the future direction of your work. The competition is open to students graduating in 2026 not only from HSE University but from universities in Russia and abroad. Papers may be submitted in Russian and English, and in some fields also in French, German, and Spanish.

 

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Traumatic Brain Injury Models in Zebrafish (Danio rerio)

Neuroscience and Behavioral Physiology. 2022. Vol. 52. No. 3. P. 405–414.
Babchenko V. Y., Belova A. S., A. A. Bashirzade, Tikhonova M. A., Demin K. A., Zabegalov K. N., Petersen E. V., Kalueff A. V., Amstislavskaya T. G.

Current medicine has a high level of interest in studies of the pathogenesis of traumatic brain injury (TBI). This comes particularly from high levels of hospitalization of patients with this pathology, its high mortality, and the low level of development of existing treatment methods. Improvements in the understanding of the pathogenesis of TBI require appropriate experimental designs, starting with suitable selection of animal models. Zebrafi sh (Danio rerio) have been identifi ed as a potential organism for studying the molecular events underlying the pathogenesis of TBI. The advantages of this model organism include a high level of genetic homology with humans, relatively low costs, and high neuroregenerative potential. The pathogenesis of TBI involves multiple processes: the primary traumatic damage, neuroinfl ammation, neurodegeneration, cerebral edema, and neuroregeneration. Many important events related to these processes have been well-studied in rodent models. However, the molecular processes of TBI pathogenesis remain poorly understood. This review addresses experimental models of TBI in zebrafi sh and discusses their advantages and limitations, as compared with other model organisms. The review also examines the pathophysiology and molecular biology underlying the pathogenesis of TBI. Several examples of the experimental therapy of TBI in zebrafi sh are presented, refl ecting the potential for future developments in this fi eld, and emphasizing the value of zebrafi sh as a model object for studying TBI pathogenesis.

Research target: Biology Basic Medicine
Language: English
DOI
Text on another site
Keywords: NeurodegenerationNeuroinflammationzebrafish Traumatic Brain InjuryNeuroregeneration
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