ОРИГИНАЛЬНОЕ ИССЛЕДОВАНИЕ
Активация коры головного мозга при выполнении задачи Стернберга на вербальную рабочую память
1 Научный центр неврологии, Москва, Россия
2 Сколковский институт науки и технологий, Москва, Россия
Для корреспонденции: Илья Сергеевич Бакулин
Волоколамское шоссе, д. 80, г. Москва, 125367; ur.ygoloruen@nilukab
Вклад авторов в работу: И. С. Бакулин, М. В. Федоров, Е. В. Гнедовская, Н. А. Супонева, М. А. Пирадов — планирование и дизайн исследования; И. С. Бакулин, А. Х. Забирова — анализ литературы; И. С. Бакулин, А. Г. Пойдашева — сбор данных; А. Х. Забирова, П. Н. Копнин, Д. О. Синицын — анализ данных; И. С. Бакулин, А. Х. Забирова, Д. О. Синицын, М. В. Федоров, Е. В. Гнедовская, Н. А. Супонева, М. А. Пирадов — интерпретация данных; И. С. Бакулин, А. Х. Забирова — подготовка черновика рукописи статьи; П. Н. Копнин, Д. О. Синицын, А. Г. Пойдашева, М. В. Федоров, Е. В. Гнедовская, Н. А. Супонева, М. А. Пирадов — внесение правок в черновик рукописи статьи; все авторы — подготовка финального варианта статьи.
- Archer JA, Lee A, Qiu A, Chen SA. Working memory, age and education: A lifespan fMRI study. PLoS One. 2018; 13 (3): e0194878.
- Chai WJ, Abd Hamid AI, Abdullah JM. Working Memory From the Psychological and Neurosciences Perspectives: A Review. Front Psychol. 2018; 9: 401.
- D’Esposito M, Postle BR. The cognitive neuroscience of working memory. Annu Rev Psychol. 2015; 66: 115–42.
- Fuster JM. Unit activity in prefrontal cortex during delayed- response performance: neuronal correlates of transient memory. J Neurophysiol. 1973; 36 (1): 61–78.
- Fuster JM, Bauer RH, Jervey JP. Functional interactions between inferotemporal and prefrontal cortex in a cognitive task. Brain Res. 1985; 330 (2): 299–307.
- Riley MR, Constantinidis C. Role of Prefrontal Persistent Activity in Working Memory. Front Syst Neurosci. 2016; 9: 181.
- Egli T, Coynel D, Spalek K, Fastenrath M, Freytag V, Heck A et al. Identification of Two Distinct Working Memory-Related Brain Networks in Healthy Young Adults. eNeuro. 2018; 5 (1): pii: ENEURO.0222-17.2018.
- Cohen JR, Sreenivasan KK, D’Esposito M. Correspondence between stimulus encoding- and maintenance-related neural processes underlies successful working memory. Cereb Cortex. 2014; 24 (3): 593–9.
- Narayanan NS, Prabhakaran V, Bunge SA, Christoff K, Fine EM, Gabrieli JD. The role of the prefrontal cortex in the maintenance of verbal working memory: an event-related FMRI analysis. Neuropsychology. 2005; 19 (2): 223–32.
- Beynel L, Davis SW, Crowell CA, Hilbig SA, Lim W, Nguyen D, et al. Online repetitive transcranial magnetic stimulation during working memory in younger and older adults: A randomized within-subject comparison. PLoS One. 2019; 14 (3): e0213707.
- Emch M, von Bastian CC, Koch K. Neural correlates of verbal working memory: An fMRI meta-analysis. Front Hum Neurosci. 2019; 13: 180.
- Rottschy C, Langner R, Dogan I, Reetz K, Laird AR, Schulz JB, et al. Modelling neural correlates of working memory: a coordinate- based meta-analysis. Neuroimage. 2012; 60 (1): 830–46.
- Xu Y. Reevaluating the Sensory Account of Visual Working Memory Storage. Trends Cogn Sci. 2017; 21 (10): 794–815.
- Sternberg, S. High-speed scanning in human memory. Science. 1966; 153 (3736): 652–4.
- Brunoni AR, Vanderhasselt MA. Working memory improvement with non-invasive brain stimulation of the dorsolateral prefrontal cortex: a systematic review and meta-analysis. Brain Cogn. 2014; 86: 1–9.
- Jiang Y, Guo Z, Xing G, He L, Peng H, Du F, et al. Effects of High-Frequency Transcranial Magnetic Stimulation for Cognitive Deficit in Schizophrenia: A Meta-Analysis. Front Psychiatry. 2019; 10: 135.
- Sack AT, Kadosh RC, Schuhmann T, Moerel M, Walsh V, Goebel R. Optimizing functional accuracy of TMS in cognitive studies: A comparison of methods. J Cogn Neurosci. 2009; 21 (2): 207–21.
- Wen X, Wang H, Liu Z, Liu C, Li K, Ding M, et al. Dynamic Top- down Configuration by the Core Control System During Working Memory. Neuroscience. 2018; 391: 13–24.
- Woodward TS, Feredoes E, Metzak PD, Takane Y, Manoach DS. Epoch-specific functional networks involved in working memory. Neuroimage. 2013; 65: 529–39.
- Motes MA, Rypma B. Working memory component processes: Isolating BOLD signal changes. Neuroimage. 2010; 49 (2): 1933–41.
- Hamidi M, Tononi G, Postle BR. Evaluating the role of prefrontal and parietal cortices in memory-guided response with repetitive transcranial magnetic stimulation. Neuropsychologia. 2009; 47 (2): 295–302.
- Oldfield RC. The assessment and analysis of handedness: The Edinburgh inventory. Neuropsychologia. 1971; 9 (1): 97–113.
- Kanal E, Barkovich AJ, Bell C, Borgstede JP, Bradley Jr. WG, Froelich JW, et al. ACR guidance document on MR safe practices: 2013. J Magn Reson Imaging. 2013; 37 (3): 501–30.
- Yeo BT, Krienen FM, Sepulcre J, Sabuncu MR, Lashkari D, Hollinshead M, et al. The organization of the human cerebral cortex estimated by intrinsic functional connectivity. J Neurophysiol. 2011; 106 (3): 1125–65. Available from: http://www.freesurfer. net/fswiki/CorticalParcellation_Yeo2011.
- xjView. Version 9.6 [software]. Available from: http://www. alivelearn.net/xjview
- Trapp S, Mueller K, Lepsien J, Kraemer B, Gruber O. Different neural capacity limitations for articulatory and non-articulatory maintenance of verbal information. Exp Brain Res. 2014; 232 (2): 619–28.
- Kim H. Neural activity during working memory encoding, maintenance, and retrieval: A network-based model and meta- analysis. Hum Brain Mapp. 2019; 40 (17): 4912–33.
- Soreq E, Leech R, Hampshire A. Dynamic network coding of working-memory domains and working-memory processes. Nat Commun. 2019; 10 (1): 936.
- Nee DE, Brown JW, Askren MK, Berman MG, Demiralp E, Krawitz A, et al. A meta-analysis of executive components of working memory. Cereb Cortex. 2013; 23 (2): 264–82.
- Розовская Р. И., Печенкова Е. В, Мершина Е. А., Мачинская Р. И. фМРТ-исследование удержания в рабочей памяти изображений различной эмоциональной валентности. Психология. Журнал высшей школы экономики. 2014; 11 (1): 27–48.