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1Academic Journal
Source: Высшая школа: научные исследования.
Subject Terms: синаптическая пластичность, рецептивное поле, виноградная улитка, идентифицируемый нейрон, внутриклеточная циркуляция, психофизиология
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2Academic Journal
Authors: Мадина Зокировна Исломова
Source: Science and Education; Vol. 6 No. 6 (2025): Science and Education; 496-502 ; 2181-0842
Subject Terms: нейропластичность, музыкальный мозг, нейронные сети, музыкальное обучение, межполушарная интеграция, музыкальная терапия, критические периоды развития, синаптическая пластичность
File Description: application/pdf
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3Academic Journal
Authors: D. Yu. Afanasyeva, P. M. Balaban, Д. Ю. Афанасьева, П. М. Балабан
Source: Vestnik Moskovskogo universiteta. Seriya 16. Biologiya; Том 79, № 2S (2024); 37-45 ; Вестник Московского университета. Серия 16. Биология; Том 79, № 2S (2024); 37-45 ; 0137-0952
Subject Terms: реконсолидация, synaptic plasticity, invertebrates, behavior, memory, reconsolidation, синаптическая пластичность, беспозвоночные, поведение, память
File Description: application/pdf
Relation: https://vestnik-bio-msu.elpub.ru/jour/article/view/1379/680; Сахаров Д. А. Генеалогия нейронов. Москва: Наука; 1974. 183 с.; Chase R. Behavior and its neural control in gastropod mollusks. Oxford: Oxford Univ. Press; 2002. 336 pp.; Zakharov I.S., Hayes N.L., Ierusalimsky V.N., Nowakowski R.S., Balaban P.M. Postembryonic neuronogenesis in the procerebrum of the terrestrial snail, Helix L. J. Neurobiol. 1998;35(3):271–276.; Spallanzani L. Memorie su la respirazione, vol. 1, vol. 2. Milano: Annesio Nobili; 1803. 373 pp.; Satoshi W., Kirino Y., Gelperin A. Neural and molecular mechanisms of microcognition in Limax. Learn. Mem. 2008;15(9):633–642.; Balaban P.M., Vehovszky A., Maximova O.A., Zakharov I.S. Effect of 5,7-dihydroxytryptamine on the food-aversive conditioning in the snail Helix lucorum L. Brain. Res. 1987;404(1–2):201–210.; Adamo S. A., Chase R. The interactions of courtship, feeding, and locomotion in the behavioral hierarchy of the snail Helix aspersa. Behav. Neur. Biol. 1991;55(1):1–18.; Chase R. Brain cells that command sexual behavior in the snail Helix aspersa. J. Neurobiol. 1986;17(6):669–679.; Balaban P., Chase R. Stimulation of mesocerebrum in Helix aspersa inhibits the neural network underlying avoidance behavior. J. Compar. Physiol. A. 1990;166(3):421–427.; Willows A.O. Behavioral acts elicited by stimulation of single, identifiable brain cells. Science. 1967;157(3788):570–574.; Balaban P.M. System of command neurons in snail’s escape behavior. Acta Neurobiol. Exp. 1979;39(2):97–107.; Malyshev A.Y., Balaban P.M. Identification of mechanoafferent neurons in terrestrial snail: response properties and synaptic connections. J. Neurophysiol. 2002;87(5):2364–2371.; Balaban P.M., Bravarenko N.I., Maksimova O.A., Nikitin E., Ierusalimsky V.N., and Zakharov I.S. A single serotonergic modulatory cell can mediate reinforcement in the withdrawal network of the terrestrial snail. Neurobiol. Learn. Memory. 2001;75(1):30–50.; Balaban P.M. Cellular mechanisms of behavioral plasticity in terrestrial snail. Neurosci. Biobehav. Rev. 2002;26(5):597–630.; Никитин Е.С., Балабан П.М. Структурнофункциональная организация сети серотонинергических нейронов наземной улитки. Журн. высш. нервн. деят. им. И.П. Павлова. 2011;61(6):750–762.; Kupfermann I., Weiss K. The command neuron concept. Behav. Brain. Sci.1978;1(1):3–39.; Kupfermann I., Weiss K. Motor program selection in simple model systems. Current Opin. Neurobiol. 2001;11(6):673–677.; Vehovszky A.L., Elekes H., Balaban P. Serotonergic input on identified command neurons in Helix. Acta. Biol. Hungarica. 1993;44(1):97–101.; Zakharov I.S., Ierusalimsky V.N., Balaban P.M. Pedal serotonergic neurons modulate the synaptic input of withdrawal interneurons of Helix. Invertebrate Neurosci. 1995;1(1):41–52.; Hawkins R.D., Son H., Arancio O. Nitric oxide as a retrograde messenger during long-term potentiation in hippocampus. Progress Brain Res. 1998;118:155–172.; Colwill R.M., Absher R. A., Roberts M.L. Context-US learning in Aplysia Californica. J. Neurosci. 1988;8(12):4434–4439.; Balaban P., Bravarenko N. Long-term sensitization and environmental conditioning in terrestrial snails. Exp. Brain Res. 1993;96(3):487–493.; Sahley C.L., Martin K.A. Analysis of associative learning in the terrestrial mollusc Limax maximus. II. Appetitive learning. J. Comp. Physiol. A, Sens. Neur. Behav. Physiol. 1990;167(3):339–345.; Balaban P.M., Chase R. Self-stimulation in snails. Neurosci. Res. Com. 1989;4(3):139–143.; Gainutdinova T.H., Tagirova R.R, Ismailova A.I., Muranova L.N., Samarova E.I., Gainutdinov K.L., Balaban P.M. Reconsolidation of a context long-term memory in the terrestrial snail requires protein synthesis. Learn. Mem. 2005;12(6):620–625.; Balaban P., Chase R. Interrelationships of the emotionally positive and negative regions of the brain of the edible snail. Neurosci. Behav. Physiol. 1991;21(2):172–180.; Balaban P. Behavioral neurobiology of learning in terrestrial snails. Progress Neurobiol. 1993;41(1):1–19.; Иерусалимский В.H., Захаров И.С., Балабан П.М. Сравнение серотонин-и дофаминергической нейронных систем у половозрелых и ювенильных наземных моллюсков Helix и Eobania. Журн. высш. нервн. деят. им. И.П. Павлова. 1997;47(3):563–576.; Balaban P.M., Korshunova T.A., Bravarenko N.I. Postsynaptic calcium contributes to reinforcement in a three-neuron network exhibiting associative plasticity. Eur. J. Neurosci. 2004;19(2):227–233.; Glanzman D.L., Mackey S.L., Hawkins R.D., Dyke A.M., Lloyd P.E., Kandel E.R. Depletion of serotonin in the nervous system of aplysia reduces the behavioral enhancement of gill withdrawal as well as the heterosynaptic facilitation produced by Tail Shock. J. Neurosci. 1989;9(12):4200–4213.; Hammer M., Menzel R. Learning and memory in the honeybee. J. Neurosci. 1995;15(3 Pt. 1):1617–1630.; Balaban P.M., Vinarskaya A.K., Zuzina A.B., Ierusalimsky V.N., A. Y. Malyshev A.Y. Impairment of the serotonergic neurons underlying reinforcement elicits extinction of the repeatedly reactivated context memory. Sci. Rep. 2016;6(1):36933.
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4Academic Journal
Authors: Isabella G. Silkis
Source: Интегративная физиология, Vol 2, Iss 2 (2021)
Subject Terms: мозжечок, синаптическая пластичность, дофамин, Physiology, межнейронные связи, базальные ганглии, QP1-981
Access URL: https://intphysiology.ru/index.php/main/article/download/70/76
https://doaj.org/article/147760c807ac47a7afd07c0d2c1cba94
https://cyberleninka.ru/article/n/vozmozhnye-mehanizmy-vzaimozavisimogo-uchastiya-bazalnyh-gangliev-i-mozzhechka-v-funktsionirovanii-dvigatelnyh-i-sensornyh-sistem
https://www.intphysiology.ru/index.php/main/article/view/70 -
5Academic Journal
Source: Интегративная физиология, Vol 4, Iss 1 (2023)
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6Dissertation/ Thesis
Authors: Fedorov, D. D.
Contributors: Вохминцев, А. С., Vokhmintsev, A. S., УрФУ. Физико-технологический институт, Кафедра физических методов и приборов контроля качества
Subject Terms: СИНАПТИЧЕСКАЯ ПЛАСТИЧНОСТЬ, CONDUCTION MECHANISM, MEMRISTORS, TITANIUM DIOXIDE, МАГИСТЕРСКАЯ ДИССЕРТАЦИЯ, MASTER'S THESIS, МДМ-СТРУКТУРА, МЕХАНИЗМ ПРОВОДИМОСТИ, RESISTIVE SWITCHING, РЕЗИСТИВНОЕ ПЕРЕКЛЮЧЕНИЕ, SYNAPTIC PLASTICITY, АНОДИРОВАНИЕ, ANODIZING, МЕМРИСТОРЫ, MIM-STRUCTURE, ДИОКСИД ТИТАНА
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Access URL: http://elar.urfu.ru/handle/10995/140685
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7
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8Academic Journal
Authors: Изабелла Гершовна Силькис
Source: Интегративная физиология, Vol 3, Iss 1 (2022)
Subject Terms: произвольное внимание, синаптическая пластичность, дофамин, неокортекс, таламус, базальные ганглии, Physiology, QP1-981
File Description: electronic resource
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9Academic Journal
Authors: Мурзина Г. Б.
Subject Terms: ионотропный рецептор, кластер, синаптическая пластичность
Relation: https://zenodo.org/records/4593542; oai:zenodo.org:4593542; https://doi.org/10.5281/zenodo.4593542
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10
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11Academic Journal
Authors: Pavlov, K.I., Mukhin, V.N.
Subject Terms: синаптическая пластичность, долговременная потенциация, neurogenesis, нейропластичность, synaptic plasticity, social and professional adaptation, cognitive functions, социально-профессиональная адаптация, neuroplasticity, нейрогенез, когнитивные функции, УДК 612.821.2, long-term potentiation
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12Academic Journal
Authors: Pavlov, K.I., Mukhin, V.N.
Subject Terms: синаптическая пластичность, долговременная потенциация, neurogenesis, нейропластичность, synaptic plasticity, social and professional adaptation, cognitive functions, социально-профессиональная адаптация, neuroplasticity, нейрогенез, когнитивные функции, УДК 612.821.2, long-term potentiation
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13Academic Journal
Subject Terms: биология, общая генетика, медицина, медицинская генетика, тревожность, контактин, синаптическая пластичность, анализ ассоциаций, психогенетика, полиморфный локус
Availability: http://dspace.bsu.edu.ru/handle/123456789/43217
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14Academic Journal
Authors: DEMBITSKAYA Y.V., TYURIKOVA O.V., SEMYANOV A.V.
Source: Sovremennye tehnologii v medicine. 8:260-268
Subject Terms: 0301 basic medicine, 0303 health sciences, 03 medical and health sciences, brain extracellular matrix, synaptic plasticity, brain injuries, spinal cord injuries, chondroitin sulphate proteoglycans, chondroitinase ABC, ВНЕКЛЕТОЧНЫЙ МАТРИКС МОЗГА,СИНАПТИЧЕСКАЯ ПЛАСТИЧНОСТЬ,ТРАВМЫ МОЗГА,СПИННОМОЗГОВАЯ ТРАВМА,ХОНДРОИТИН СУЛЬФАТ ПРОТЕОГЛИКАНЫ,ХОНДРОИТИНАЗА ABC,BRAIN EXTRACELLULAR MATRIX,SYNAPTIC PLASTICITY,BRAIN INJURIES,SPINAL CORD INJURIES,CHONDROITIN SULPHATE PROTEOGLYCANS,CHONDROITINASE ABC
File Description: text/html
Access URL: http://www.stm-journal.ru/en/numbers/2016/4/1304/pdf
https://cyberleninka.ru/article/n/the-role-of-the-brain-extracellular-matrix-in-synaptic-plasticity-after-brain-injuries-review
http://www.stm-journal.ru/en/numbers/2016/4/1304
http://cyberleninka.ru/article/n/the-role-of-the-brain-extracellular-matrix-in-synaptic-plasticity-after-brain-injuries-review
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http://cyberleninka.ru/article/n/the-role-of-the-brain-extracellular-matrix-in-synaptic-plasticity-after-brain-injuries-review-1
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15Report
Subject Terms: белковый докинг, synaptic plasticity, cognitive functions, dendritic spikes, никотиновые рецепторы, α7-нАХР, α7-nAChR, neuromodulators, NMR, 3. Good health, Lypd6A, синаптическая пластичность, protein docking, Lypd6B, нейромодуляторы, дендритные шипики, трехпетельные белки, three-finger proteins, когнитивные функции, ЯМР, nicotine receptors
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16
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18Dissertation/ Thesis
Authors: Федоров, Д. Д., Fedorov, D. D.
Thesis Advisors: Вохминцев, А. С., Vokhmintsev, A. S., УрФУ. Физико-технологический институт, Кафедра физических методов и приборов контроля качества
Subject Terms: MASTER'S THESIS, SYNAPTIC PLASTICITY, MEMRISTORS, TITANIUM DIOXIDE, MIM-STRUCTURE, CONDUCTION MECHANISM, RESISTIVE SWITCHING, ANODIZING, МАГИСТЕРСКАЯ ДИССЕРТАЦИЯ, СИНАПТИЧЕСКАЯ ПЛАСТИЧНОСТЬ, МЕМРИСТОРЫ, ДИОКСИД ТИТАНА, МДМ-СТРУКТУРА, МЕХАНИЗМ ПРОВОДИМОСТИ, РЕЗИСТИВНОЕ ПЕРЕКЛЮЧЕНИЕ, АНОДИРОВАНИЕ
File Description: application/pdf
Availability: http://elar.urfu.ru/handle/10995/140685
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19Academic Journal
Authors: Девятникова, К. Г.
Subject Terms: языкознание, лингвистика, общее языкознание, психолингвистика, на кончике языка, синаптическая пластичность, синаптическая трансмиссия, пластичность мозга, специфическое кодирование, ретроактивное торможение, проективное торможение, словесно-логическая память
Availability: http://dspace.bsu.edu.ru/handle/123456789/23929
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20Academic Journal
Authors: A. V. Kazantseva, R. F. Enikeeva, A. R. Romanova, S. A. Bashkatov, S. I. Galyautdinova, T. T. Tikhomirova, S. B. Malykh, E. K. Khusnutdinova, А. В. Казанцева, Р. Ф. Еникеева, А. Р. Романова, С. А. Башкатов, С. И. Галяутдинова, Т. Н. Тихомирова, С. Б. Малых, Э. К. Хуснутдинова
Source: Medical Genetics; Том 15, № 11 (2016); 17-23 ; Медицинская генетика; Том 15, № 11 (2016); 17-23 ; 2073-7998
Subject Terms: synaptic plasticity, гены-кандидаты, средовые факторы, нейрексины, синаптическая пластичность, mathematics disability, candidate genes, environmental factors, neurexin
File Description: application/pdf
Relation: https://www.medgen-journal.ru/jour/article/view/186/163; Ashcraft MH, Moore AM.Mathematics anxiety and the affective drop in performance. Journal of Psychoeducational Assessment. 2009;27(3):197-205.; Chin S. Mathematics anxiety in secondary students in England. Dyslexia. 2009;15(1):61-68.; Plomin R., Kovas Y., Haworth CM.Generalist Genes: Genetic Links Between Brain, Mind, and Education.Mind Brain Educ.2007;1(1):11-19.; Voineskos AN, Lett TA, Lerch JP, et al. Neurexin-1 and frontal lobe white matter: an overlapping intermediate phenotype for schizophrenia and autism spectrum disorders // PLoS One. 2011;6(6).20982.; Todarello G, Feng N, Kolachana BS, et al. Incomplete penetrance of NRXN1 deletions in families with schizophrenia. Schizophr Res.2014;155(1-3):1-7.; Presutti C, Rosati J, Vincenti S, Nasi S. Non coding RNA and brain.BMC Neurosci. 2006;7(1):5.; Presutti C, Rosati J, Vincenti S, Nasi S. Non coding RNA and brain. BMC Neurosci. 2006;7(1):5.; Whalley HC, O’Connell G, Sussmann JE, et al. Genetic variation in CNTNAP2 alters brain function during linguistic processing in healthy individuals. Am. J. Med. Genet. B Neuropsychiatr. Genet. 2011;156(B):941-948.; Stein MB, Yang BZ, Chavira DA, et al. A common genetic variant in the neurexin superfamily member CNTNAP2 is associated with increased risk for selective mutism and social anxiety-related traits. Biol. Psychiatry. 2011;69(9):825-831.; Keller MC.Gene х environment interaction studies have not properly controlled for potential confounders: the problem and the (simple) solution. Biol. Psychiatry. 2014;75(1):18-24.; Rodenas-Cuadrado P, Ho J, Vernes SC.Shining a light on CNTNAP2: complex functions to complex disorders. Eur. J. Hum. Genet. 2014;22(2):171-178.; Carvalho MR, Vianna G, Oliveira Lde F, et al. Are 22q11.2 distal deletions associated with math difficulties?Am. J. Med. Genet. A. 2014;164A(9):2256-2262.; Kizilirmak JM, Rosler F, Bien S, Khader PH. Inferior parietal and right frontal contributions to trial-by-trial adaptations of attention to memory. Brain Res. 2015;1614:14-27.; Varea O, Martin-de-Saavedra MD, Kopeikina KJ, et al. Synaptic abnormalities and cytoplasmic glutamate receptor aggregates in contactin associated protein-like 2/Caspr2 knockout neurons. Proc. Natl. Acad. Sci. U S A. 2015;112(19):6176-6181; Whitehouse AJ, Bishop DV, Ang QW, et al. CNTNAP2 variants affect early language development in the general population. Genes Brain Behav.2011;10(4):451-456.; Simonoff E, Pickles A, Charman T, et al. Psychiatric disorders in children with autism spectrum disorders: prevalence, comorbidity, and associated factors in a population-derived sample. J. Am. Acad. Child. Adolesc. Psychiatry. 2008;47:921-929.; Ross CA, Poirier MA. Protein aggregation and neurodegenerative disease. Nat. Med. 2004;10(Suppl):10-17.; Eysenck HJ, Cookson D. Personality in primary school children:3. - Family background. British Journal of Educational Psychology. 1970;40: 117-131.; Schneider E, El Hajj N, Richter S, et al. Widespread differences in cortex DNA methylation of the «language gene» CNTNAP2 between humans and chimpanzees.Epigenetics. 2014;9(4):533-545.; Kupers LK, Xu X, Jankipersadsing SA, et al. DNA methylation mediates the effect of maternal smoking during pregnancy on birthweight of the offspring. Int. J. Epidemiol.2015;44(4):1224-37.
Availability: https://www.medgen-journal.ru/jour/article/view/186