Proceedings and chapters

(2025). Automatic detection of dyslexia based on eye movements during reading in Russian. Proceedings of the 63rd Annual Meeting of the Association for Computational Linguistics.

Cite URL Preprint

(2021). Do we rely on good-enough processing in reading under auditory and visual noise?. Center for Open Science.

Cite Project DOI URL

(2021). The Impact of Phonological and Orthographic Processing on Reading Speed in Russian-speaking Children. The Russian Journal of Cognitive Science.

Cite Project DOI URL

(2021). Влияние факторов речевого развития на формирование навыков чтения у русскоязычных детей. Когнитивная наука в Москве: новые исследования. Материалы конференции 23 – 24 июня 2021.

PDF Cite Project

(2021). Влияние фонологической и орфографической обработки на движения глаз при чтении у младших русскоязычных школьников. Когнитивная наука в Москве: новые исследования. Материалы конференции 23 – 24 июня 2021.

PDF Cite Project

(2021). Фонологическая и орфографическая обработка в парафовеальной области при чтении у детей и взрослых. Когнитивная наука в Москве: новые исследования. Материалы конференции 23 – 24 июня 2021.

Cite Project

(2021). Different Types of Russian Adjectival and Verbal Polysemy in the Mental Lexicon. 9th Novi Sad workshop on Psycholinguistic, neurolinguistic and clinical linguistic research.

Cite Project URL

(2021). Russian Child Language Assessment Battery (RuCLAB) and its Application in Primary School Children with ASD. Autism and Developmental Disorders.

Cite Project DOI URL

(2020). Development of phonological and orthographic parafoveal processing during reading in russian. Proceedings of the 4th International Conference on Neurobiology of Speech and Language.

Cite Project

(2020). Language Models for Cloze Task Answer Generation in Russian. Proceedings of the Second Workshop on Linguistic and Neurocognitive Resources.

Cite URL PDF

(2018). RUSSE2018: a Shared Task on Word Sense Induction for the Russian Language. Computational Linguistics and Intellectual Technologies. International Conference "Dialogue 2018" Proceedings.

PDF Cite Project Website Preprint

(2017). Automated Word Sense Frequency Estimation for Russian Nouns. Quantitative Approaches to the Russian Language.

Cite DOI URL Website

(2017). Word Sense Frequency Estimation for Russian: Verbs, Adjectives, and Different Dictionaries. Electronic Lexicography in the 21st Century (eLex 2017).

PDF Cite

(2017). Word Sense Induction for Russian: Deep Study and Comparison with Dictionaries. Computational Linguistics and Intellectual Technologies. International Conference "Dialogue 2017" Proceedings.

PDF Cite Project Website

(2016). Regular Polysemy: From Sense Vectors to Sense Patterns. Proceedings of the 26th International Conference on Computational Linguistics (COLING 2016).

Cite URL Website

(2016). The Taming of the Polysemy: Automated Word Sense Frequency Estimation for Lexicographic Purposes. Proceedings of the XVII EURALEX International Congress. Lexicography and Linguistic Diversity.

PDF Cite

(2016). Word Sense Disambiguation for Russian Verbs Using Semantic Vectors and Dictionary Entries. Computational Linguistics and Intellectual Technologies. Proceedings of the International Conference "Dialogue 2016".

PDF Cite

(2016). Word Sense Frequency of Similar Polysemous Words in Different Languages. Computational Linguistics and Intellectual Technologies. Proceedings of the International Conference "Dialogue 2016".

PDF Cite

(2015). The Impact of Different Vector Space Models and Supplementary Techniques on Russian Semantic Similarity Task. Computational Linguistics and Intellectual Technologies. Dialogue.

PDF Cite

(2014). Towards a Word Sense Frequency Dictionary. Computational Linguistics and Intellectual Technologies. Dialogue.

PDF Cite