Results for 'Verbal working memory'

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  1. Verbal working memory and sentence comprehension.David Caplan & Gloria S. Waters - 1999 - Behavioral and Brain Sciences 22 (1):77-94.
    This target article discusses the verbal working memory system used in sentence comprehension. We review the concept of working memory as a short-duration system in which small amounts of information are simultaneously stored and manipulated in the service of accomplishing a task. We summarize the argument that syntactic processing in sentence comprehension requires such a storage and computational system. We then ask whether the working memory system used in syntactic processing is the same (...)
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  2.  26
    Verbal working memory predicts co-speech gesture: Evidence from individual differences.Maureen Gillespie, Ariel N. James, Kara D. Federmeier & Duane G. Watson - 2014 - Cognition 132 (2):174-180.
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  3.  33
    Components of verbal working memory.Aaro Toomela & J. üri Allik - 1999 - Behavioral and Brain Sciences 22 (1):110-110.
    The target article differentiates a new, syntactic component in verbal working memory. We suggest that several more components could be differentiated to make a model of working memory complete. Next, syntax is not always separable from the subject's verbal memory capacity as measured by standard working memory tasks. Finally, interference between different processes cannot be taken as evidence for the processes sharing the same resources. Interference might be a result of active (...)
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  4.  31
    Verbal Working Memory Is Related to the Acquisition of Cross-Linguistic Phonological Regularities.Evelyn Bosma, Wilbert Heeringa, Eric Hoekstra, Arjen Versloot & Elma Blom - 2017 - Frontiers in Psychology 8.
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  5.  14
    Treating verbal working memory in a boy with intellectual disability.Margherita Orsolini, Sergio Melogno, Nausica Latini, Roberta Penge & Sara Conforti - 2015 - Frontiers in Psychology 6.
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  6.  10
    Verbal Working Memory Processes in Students With Mild and Borderline Intellectual Disabilities: Differential Developmental Trajectories for Rehearsal and Redintegration.Gunnar Bruns, Birgit Ehl & Michael Grosche - 2019 - Frontiers in Psychology 9.
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  7.  6
    Verbal working memory encodes phonological and semantic information differently.B. Kowialiewski, J. Krasnoff & K. Oberauer - 2023 - Cognition 233 (C):105364.
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  8.  83
    Visuo-spatial and verbal working memory in the five-disc tower of London task: An individual differences approach.K. J. Gilhooly, V. Wynn, L. H. Phillips, R. H. Logie & S. Della Sala - 2002 - Thinking and Reasoning 8 (3):165 – 178.
    This paper reports a study of the roles of visuo-spatial and verbal working memory capacities in solving a planning task - the five-disc Tower of London (TOL) task. An individual differences approach was taken. Sixty adult participants were tested on 20 TOL tasks of varying difficulty. Total moves over the 20 TOL tasks was taken as a measure of performance. Participants were also assessed on measures of fluid intelligence (Raven's matrices), verbal short-term storage (Digit span), (...) working memory span (Silly Sentence span), visuo-spatial short-term storage (Visual Pattern span and Corsi Block span), visuo-spatial working memory (Corsi Distance Estimation), visuo-spatial processing speed (Manikin test), and verbal speed (Rehearsal speed). Exploratory factor analysis using an oblique rotation method revealed three factors which were interpreted as (1) a visuo-spatial working memory factor, (2) an age-speed factor, and (3) a verbal working memory factor. The visuo-spatial and verbal factors were only moderately correlated. Performance on the TOL task loaded on the visuo-spatial factor but did not load on the other factors. It is concluded that the predominant goal-selection strategy adopted in solving the TOL relies on visuo-spatial working memory capacity and particularly involves the active ''inner scribe'' spatial rehearsal mechanism. These correlational analyses confirm and extend results previously obtained by use of dual task methods, (Phillips, Wynn, Gilhooly, Della Sala, & Logie, 1999). (shrink)
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  9. Language comprehension and verbal working memory.Gloria S. Waters & David Caplan - 2003 - In L. Nadel (ed.), Encyclopedia of Cognitive Science. Nature Publishing Group.
     
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  10.  23
    Evidence against decay in verbal working memory.Klaus Oberauer & Stephan Lewandowsky - 2013 - Journal of Experimental Psychology: General 142 (2):380.
  11.  22
    Contribution of working memory in multiplication fact network in children may shift from verbal to visuo-spatial: a longitudinal investigation.Mojtaba Soltanlou, Silvia Pixner & Hans-Christoph Nuerk - 2015 - Frontiers in Psychology 6:129410.
    Number facts are commonly assumed to be verbally stored in an associative multiplication fact retrieval network. Prominent evidence for this assumption comes from so-called operand-related errors (e.g. 4 × 6 = 28). However, little is known about the development of this network in children and its relation to verbal and non-verbal memories. In a longitudinal design, we explored elementary school children from grades 3 and 4 in a multiplication verification task with the operand-related and -unrelated distractors. We examined (...)
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  12.  43
    Further fractionations of verbal working memory.Randi C. Martin - 1999 - Behavioral and Brain Sciences 22 (1):106-107.
    Although the working memory capacity involved in syntactic processing may be separate from the capacity involved in word list recall, other aspects of initial sentence interpretation appear to depend on some of the same capacities tapped by span tasks. Specifically, there appears to a capacity for lexical–semantic retention involved in both sentence comprehension and span measures.
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  13.  33
    Neural Correlates of Verbal Working Memory: An fMRI Meta-Analysis.Mónica Emch, Claudia C. von Bastian & Kathrin Koch - 2019 - Frontiers in Human Neuroscience 13.
  14.  25
    Cerebro-Cerebellar Pathways for Verbal Working Memory.Monika Sobczak-Edmans, Yu-Chun Lo, Yung-Chin Hsu, Yu-Jen Chen, Fu Yu Kwok, Kai-Hsiang Chuang, Wen-Yih Isaac Tseng & S. H. Annabel Chen - 2019 - Frontiers in Human Neuroscience 12.
  15.  20
    Dissociative style and individual differences in verbal working memory span.M. Deruiter, R. Phaf, B. Elzinga & R. Dyck - 2004 - Consciousness and Cognition 13 (4):821-828.
    Dissociative style is mostly studied as a risk factor for dissociative pathology, but it may also reflect a fundamental characteristic of healthy information processing. Due to the close link between attention and working memory and the previous finding of enhanced attentional abilities with a high dissociative style, a positive relationship was also expected between dissociative style and verbal working memory span. In a sample of 119 psychology students, it was found that the verbal span (...)
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  16.  42
    Models of verbal working memory capacity: What does it take to make them work?Nelson Cowan, Jeffrey N. Rouder, Christopher L. Blume & J. Scott Saults - 2012 - Psychological Review 119 (3):480-499.
  17.  7
    Role of verbal working memory in rapid procedural acquisition of a choice response task.Stephen Monsell & Brontë Graham - 2021 - Cognition 214 (C):104731.
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  18.  21
    Visuospatial, rather than verbal working memory capacity plays a key role in verbal and figural creativity.Runhao Lu, Yanna Zhang, Naili Bao, Meng Su, Xingli Zhang & Jiannong Shi - forthcoming - Tandf: Thinking and Reasoning:1-33.
  19.  14
    Visuospatial, rather than verbal working memory capacity plays a key role in verbal and figural creativity.Runhao Lu, Yanna Zhang, Naili Bao, Meng Su, Xingli Zhang & Jiannong Shi - 2022 - Thinking and Reasoning 28 (1):29-60.
  20.  22
    "Models of verbal working memory capacity: What does it take to make them work?": Correction to Cowan et al. (2012).Nelson Cowan, Jeffrey N. Rouder, Christopher L. Blume & J. Scott Saults - 2012 - Psychological Review 119 (3):499-499.
  21.  13
    Predicting the Structure of a Lexical Environment from Properties of Verbal Working Memory.Yuki Tanida & Satoru Saito - 2022 - Cognitive Science 46 (8):e13181.
    Cognitive Science, Volume 46, Issue 8, August 2022.
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  22.  20
    Associations between speech understanding and auditory and visual tests of verbal working memory: effects of linguistic complexity, task, age, and hearing loss.Sherri L. Smith & M. Kathleen Pichora-Fuller - 2015 - Frontiers in Psychology 6.
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  23.  76
    Temporal lobe speech perception systems are part of the verbal working memory circuit: Evidence from two recent fMRI studies.Gregory Hickok & Bradley Buchsbaum - 2003 - Behavioral and Brain Sciences 26 (6):740-741.
    In the verbal domain, there is only very weak evidence favoring the view that working memory is an active state of long-term memory. We strengthen existing evidence by reviewing two recent fMRI studies of verbal working memory, which clearly demonstrate activation in the superior temporal lobe, a region known to be involved in processing speech during comprehension tasks.
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  24.  12
    Tracing the evolutionary trajectory of verbal working memory with neuro-archaeology.Shelby S. Putt & Sobanawartiny Wijeakumar - 2018 - Interaction Studies 19 (1-2):272-288.
    We used optical neuroimaging to explore the extent of functional overlap between working memory (WM) networks involved in language and Early Stone Age toolmaking behaviors. Oldowan tool production activates two verbal WM areas, but the functions of these areas are indistinguishable from general auditory WM, suggesting that the first hominin toolmakers relied on early precursors of verbal WM to make simple flake tools. Early Acheulian toolmaking elicits activity in a region bordering on Broca’s area that is (...)
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  25.  95
    Age-Specific Activation Patterns and Inter-Subject Similarity During Verbal Working Memory Maintenance and Cognitive Reserve.Christian Habeck, Yunglin Gazes & Yaakov Stern - 2022 - Frontiers in Psychology 13.
    Cognitive Reserve, according to a recent consensus definition of the NIH-funded Reserve and Resilience collaboratory,1 is constituted by any mechanism contributing to cognitive performance beyond, or interacting with, brain structure in the widest sense. To identity multivariate activation patterns fulfilling this postulate, we investigated a verbal Sternberg fMRI task and imaged 181 people with age coverage in the ranges 20–30 and 55–70. Beyond task performance, participants were characterized in terms of demographics, and neuropsychological assessments of vocabulary, episodic memory, (...)
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  26.  12
    Logical Reasoning, Spatial Processing, and Verbal Working Memory: Longitudinal Predictors of Physics Achievement at Age 12–13 Years. [REVIEW]Ulf Träff, Linda Olsson, Kenny Skagerlund, Mikael Skagenholt & Rickard Östergren - 2019 - Frontiers in Psychology 10:458416.
    To date, few studies have focused on mapping the mechanisms underlying children’s skills in science. This study investigated to what extent logical reasoning, spatial processing, and working memory, tapped at age 9-10-years, are predictive of physics skills at age 12-13-years. The study used a sample of 81 children (37 girls). Measures of mathematics and reading were also included in the study. Multiple regression analysis showed that spatial processing, and verbal working memory accounted for a similar (...)
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  27.  22
    Disruption of Cerebellar Prediction in Verbal Working Memory.Yi-Shin Sheu, Yu Liang & John E. Desmond - 2019 - Frontiers in Human Neuroscience 13.
  28.  70
    Motor system contributions to verbal and non-verbal working memory.Diana A. Liao, Sharif I. Kronemer, Jeffrey M. Yau, John E. Desmond & Cherie L. Marvel - 2014 - Frontiers in Human Neuroscience 8.
  29.  11
    Word Frequency Is Associated With Cognitive Effort During Verbal Working Memory: A Functional Near Infrared Spectroscopy Study.Amy Berglund-Barraza, Fenghua Tian, Chandramalika Basak & Julia L. Evans - 2019 - Frontiers in Human Neuroscience 13.
  30.  7
    Sex-Related Differences in the Effects of Sleep Habits on Verbal and Visuospatial Working Memory.Seishu Nakagawa, Hikaru Takeuchi, Yasuyuki Taki, Rui Nouchi, Atsushi Sekiguchi, Yuka Kotozaki, Carlos M. Miyauchi, Kunio Iizuka, Ryoichi Yokoyama, Takamitsu Shinada, Yuki Yamamoto, Sugiko Hanawa, Tsuyoshi Araki, Keiko Kunitoki, Yuko Sassa & Ryuta Kawashima - 2016 - Frontiers in Psychology 7:211027.
    Poor sleep quality negatively affects memory performance, and working memory in particular. We investigated sleep habits related to sleep quality including sleep duration, daytime nap duration, nap frequency, and dream content recall frequency (DCRF). Declarative working memory can be subdivided into verbal working memory (VWM) and visuospatial working memory (VSWM). We hypothesized that sleep habits would have different effects on VWM and VSWM. To our knowledge, our study is the first (...)
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  31.  25
    Contributions of source and inhibitory mechanisms to age-related retroactive interference in verbal working memory.Trey Hedden & Denise C. Park - 2003 - Journal of Experimental Psychology: General 132 (1):93.
  32. Working Memory Capacity of Biological Motion’s Basic Unit: Decomposing Biological Motion From the Perspective of Systematic Anatomy.Chaoxian Wang, Yue Zhou, Congchong Li, Wenqing Tian, Yang He, Peng Fang, Yijun Li, Huiling Yuan, Xiuxiu Li, Bin Li, Xuelin Luo, Yun Zhang, Xufeng Liu & Shengjun Wu - 2022 - Frontiers in Psychology 13.
    Many studies have shown that about three biological motions can be maintained in working memory. However, no study has yet analyzed the difficulties of experiment materials used, which partially affect the ecological validity of the experiment results. We use the perspective of system anatomy to decompose BM, and thoroughly explore the influencing factors of difficulties of BMs, including presentation duration, joints to execute motions, limbs to execute motions, type of articulation interference tasks, and number of joints and planes (...)
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  33.  22
    Working memory and sentence comprehension: Whose burden of proof?Arthur Wingfield - 1999 - Behavioral and Brain Sciences 22 (1):113-114.
    Caplan & Waters argue that the processing resources used for sentence comprehension are not drawn from an undifferentiated verbal working memory resource. This commentary cites data from normal aging to support this position. Still lacking in theory development is a specification of the transient memory representations necessary for interpretive and post-interpretive operations.
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  34.  18
    Improving working memory abilities in individuals with Down syndrome: a treatment case study.Hiwet Mariam Costa, Harry Robert McSweeney Purser & Maria Chiara Passolunghi - 2015 - Frontiers in Psychology 6:148881.
    Working Memory (WM) skills of individuals with Down’s syndrome DS tend to be very poor compared to typically developing children of similar mental age. In particular, research has found that in individuals with DS visuo-spatial WM is better preserved than verbal WM. This study investigated whether is possible to train Short-Term Memory (STM) and WM abilities in individuals with DS. The cases of two teenage children are reported: E.H., 17 years and 3 months, and A.S., 15 (...)
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  35.  35
    Emotion, working memory task demands and individual differences predict behavior, cognitive effort and negative affect.Justin Storbeck, Nicole A. Davidson, Chelsea F. Dahl, Sara Blass & Edwin Yung - 2015 - Cognition and Emotion 29 (1):95-117.
    We examined whether positive and negative affect motivates verbal and spatial working memory processes, respectively, which have implications for the expenditure of mental effort. We argue that when emotion promotes cognitive tendencies that are goal incompatible with task demands, greater cognitive effort is required to perform well. We sought to investigate whether this increase in cognitive effort impairs behavioural control over a broad domain of self-control tasks. Moreover, we predicted that individuals with higher behavioural inhibition system (BIS) (...)
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  36.  50
    Working Memory in Wayfinding—A Dual Task Experiment in a Virtual City.Tobias Meilinger, Markus Knauff & Heinrich H. Bülthoff - 2008 - Cognitive Science 32 (4):755-770.
  37.  16
    Working Memory in Aphasia: The Role of Temporal Information Processing.Mateusz Choinski, Elzbieta Szelag, Tomasz Wolak & Aneta Szymaszek - 2020 - Frontiers in Human Neuroscience 14.
    Aphasia is an acquired impairment of language functions resulting from a brain lesion. It is usually accompanied by deficits in non-linguistic cognitive processes. This study aimed to investigate in patients with aphasia the complex interrelationships between selected cognitive functions: auditory speech comprehension, working memory, and temporal information processing in the millisecond time range. Thirty right-handed subjects aged from 27 to 82 years suffering from post-stroke aphasia participated in the study. Verbal working memory and spatial (...) memory were assessed with: a receptive verbal test and the Corsi Block-Tapping Test, respectively. Both these WM tests used the forward tasks and backward tasks. Auditory comprehension was assessed by receptive language tests, and TIP efficiency was assessed by auditory perception of temporal order in the millisecond time range. We observed better performance of forward WM tasks than backward ones, independently of the type of material used. Furthermore, the severity of auditory comprehension impairment correlated with the efficiency on both forward and backward VWM tasks and the backward SWM task. Further analysis revealed that TIP plays a crucial role only in the latter task. These results indicate the divergent pattern of interactions between WM and TIP depending on the type of WM tasks. Level of verbal competency appeared to play an important role in both VWM tasks, whereas TIP appeared to be important for SWM, but only on the backward task. (shrink)
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  38.  61
    Working memory and reasoning: An individual differences perspective.Alison Capon, Simon Handley & Ian Dennis - 2003 - Thinking and Reasoning 9 (3):203 – 244.
    This article reports three experiments that investigated the relationship between working memory capacity and syllogistic and five-term series spatial inference. A series of complex and simple verbal and spatial working memory measures were employed. Correlational analyses showed that verbal and spatial working memory span tasks consistently predicted syllogistic and spatial reasoning performance. A confirmatory factor analysis showed that three factors best accounted for the data--a verbal, a spatial, and a general factor. (...)
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  39.  21
    Working Memory Alterations Plays an Essential Role in Developing Global Neuropsychological Impairment in Duchenne Muscular Dystrophy.Rahul Tyagi, Harshita Arvind, Manoj Goyal, Akshay Anand & Manju Mohanty - 2021 - Frontiers in Psychology 11.
    BackgroundNeuropsychological profile of Indian Duchenne muscular dystrophy subjects remains unidentified and needs to be evaluated.MethodsA total of 69 DMD and 66 controls were subjected to detailed intelligence and neuropsychological assessment. The factor indexes were derived from various components of Malin’s Intelligence Scale for Indian Children and Rey Auditory Verbal Learning Test.ResultsPoor verbal and visual memory profiles were demonstrated by DMDs, which include RAVLT-immediate recall, RAVLT-delayed recall, Rey–Osterrieth complex figure test -IR, and RCFT-DR. RAVLT-memory efficiency index demonstrated (...)
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  40.  42
    Individual differences in working memory and conditional reasoning with concrete and abstract content.Henry Markovits, Celine Doyon & Michael Simoneau - 2002 - Thinking and Reasoning 8 (2):97 – 107.
    This study examined the hypothesis that conditional reasoning involves visual short-term memory resources (Johnson-Laird, 1985). A total of 147 university students were given measures of verbal and visual short-term memory capacity and a series of concrete and abstract conditional reasoning problems. Results indicate that there is a positive correlation between verbal working memory capacity and reasoning with both concrete and abstract premises. A positive correlation was also obtained between visual working memory capacity (...)
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  41.  55
    Happiness increases verbal and spatial working memory capacity where sadness does not: Emotion, working memory and executive control.Justin Storbeck & Raeya Maswood - 2016 - Cognition and Emotion 30 (5).
  42.  12
    Commentary: Coding of serial order in verbal, visual and spatial working memory.Elger Abrahamse & Alessandro Guida - 2018 - Frontiers in Psychology 9.
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  43.  63
    Arousal, working memory, and conscious awareness in contingency learning☆.Louise D. Cosand, Thomas M. Cavanagh, Ashley A. Brown, Christopher G. Courtney, Anthony J. Rissling, Anne M. Schell & Michael E. Dawson - 2008 - Consciousness and Cognition 17 (4):1105-1113.
    There are wide individual differences in the ability to detect a stimulus contingency embedded in a complex paradigm. The present study used a cognitive masking paradigm to better understand individual differences related to contingency learning. Participants were assessed on measures of electrodermal arousal and on working memory capacity before engaging in the contingency learning task. Contingency awareness was assessed both by trial-by-trial verbal reports obtained during the task and by a short post-task recognition questionnaire. Participants who became (...)
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  44.  29
    Is it a Small World After All? Investigating the Theoretical Structure of Working Memory Cross- Nationally.Tracy Packiam Alloway, Robert Moulder, John C. Horton, Aaron Leedy, Lisa M. D. Archibald, Debora Burin, Irene Injoque-Ricle, Maria Chiara Passolunghi & Flávia Heloísa Dos Santos - 2017 - Journal of Cognition and Culture 17 (3-4):331-353.
    To our knowledge, this is one of the first studies to test different theoretical models of working memory in childhood based on a computerized assessment. We tested this across several countries: Argentina, Brazil, Canada, Italy, and UK. The present study addressed the wider macro-cultural context and how this impacts working memory. We used two economic indices to characterize the participating countries and ranked the countries based on the Global Index of Cognitive Skills and Educational Attainment. Children (...)
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  45.  23
    What working memory is for.Robert H. Logie - 1997 - Behavioral and Brain Sciences 20 (1):28-29.
    Glenberg focuses on conceptualizations that change from moment to moment, yet he dismisses the concept of working memory (sect. 4.3), which offers an account of temporary storage and on-line cognition. This commentary questions whether Glenberg's account adequately caters for observations of consistent data patterns in temporary storage of verbal and visuospatial information in healthy adults and in brain-damaged patients with deficits in temporary retention.
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  46.  10
    The Effects of Transcranial Direct Current Stimulation (tDCS) on Working Memory Training in Healthy Young Adults.Yufeng Ke, Ningci Wang, Jiale Du, Linghan Kong, Shuang Liu, Minpeng Xu, Xingwei An & Dong Ming - 2019 - Frontiers in Human Neuroscience 13:421402.
    Working memory (WM) is a fundamental cognitive ability to support complex thought, but it is limited in capacity. WM training has shown the potential to make benefit for those in need. Many studies have shown the potential of transcranial direct current stimulation (tDCS) to transiently enhance WM performance by delivering low current to the brain cortex of interest via electrodes on the scalp. TDCS has also been revealed as a promising intervention to augment WM training in a few (...)
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  47.  16
    Evaluating the Effects of Metalinguistic and Working Memory Training on Reading Fluency in Chinese and English: A Randomized Controlled Trial.Tik-Sze Carrey Siu, Catherine McBride, Chi-Shing Tse, Xiuhong Tong & Urs Maurer - 2018 - Frontiers in Psychology 9.
    Children traditionally learn to read Chinese characters by rote, and thus stretching children’s memory span could possibly improve their reading in Chinese. Nevertheless, 85% of Chinese characters are semantic-phonetic compounds that contain probabilistic information about meaning and pronunciation. Hence, enhancing children’s metalinguistic skills might also facilitate reading in Chinese. In the present study we tested whether training children’s metalinguistic skills or training their working-memory capacity in eight weeks would produce reading gains, and whether these gains would be (...)
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  48.  13
    Verbal to visual code switching improves working memory in older adults: an fMRI study.Mariko Osaka, Yuki Otsuka & Naoyuki Osaka - 2012 - Frontiers in Human Neuroscience 6.
  49.  8
    Different Influences of Negative and Neutral Emotional Interference on Working Memory in Trait Anxiety.Huifang Yang, Junqing Li & Xifu Zheng - 2021 - Frontiers in Psychology 12.
    To examine the interaction of working memory type with emotional interference in trait anxiety, event-related potentials were measured in a combined WM and emotional task. Participants completed a delayed matching-to-sample task of WM, and emotional pictures were presented during the maintenance interval. The results indicated that negative affect interfered with spatial WM; task-related changes in amplitude were observed in the late positive potential and slow waves in both the high and low anxiety groups. We also found an interaction (...)
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  50.  14
    The role of executive processes in working memory deficits in Parkinson’s Disease.Adrian M. Owen, Edward Necka, Roger R. Barker, Daniel Bor & Aleksandra Gruszka - 2016 - Polish Psychological Bulletin 47 (1):123-130.
    Idiopathic Parkinson’s disease impairs working memory, but the exact nature of this deficit in terms of the underlying cognitive mechanisms is not well understood. In this study patients with mild clinical symptoms of PD were compared with matched healthy control subjects on a computerized battery of tests designed to assess spatial working memory and verbal working memory. In the spatial working memory task, subjects were required to recall a sequence of four (...)
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