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9,957 result(s) for "Spatial Ability"
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Don’t disturb my circles: The effect of fine arts training on visuospatial ability in students
Origami, drawing and colouring are artistic activities that can be beneficial for cognitive abilities or emotional well-being. However, there is a lack of studies that would investigate and compare these activities and their effects within the spatial abilities’ domain. The aim of this study was to investigate if and how participating in three artistic activities—colouring, drawing or origami—can enhance spatial abilities. A total of 73 young adults participated in one of the three activities organized as a 7-session training, distributed every third day. Measures of spatial abilities (Spatial Reconstruction Task [SRT]), Mental Rotation Task [MRT]), Santa Barbara Solids Task [SBST]), and Corsi Block Tapping Task [Corsi]) were administered before (pretest) and after (posttest) the training, as well as at the 6-month follow-up). The Intrinsic Motivation Inventory (IMI) was administered at the posttest. The results showed no significant interaction between the training group and the measurement time point for the spatial ability tasks. Nevertheless, effect sizes at posttest favor origami and drawing in enhancing more complex spatial abilities (MRT for origami and drawing; SBST for origami; Corsi for drawing), and colouring in strengthening spatial perception (SRT). Some effects have remained for a longer period of time. Origami led to a greater pressure and tension, and colouring to higher interest and enjoyment. These results suggest that artistic activities can potentially contribute to the strengthening of spatial abilities, but it is advised to presented them in a way that reduces frustration and increase participant’s enjoyment.
Gender Differences in Large-Scale and Small-Scale Spatial Ability: A Systematic Review Based on Behavioral and Neuroimaging Research
As we human beings are living in a multidimensional space all the time. Therefore, spatial ability is vital for the survival and development of individuals. However, males and females show gender differences in this ability. So, are these gender differences influenced by the scale type of spatial ability? It's not well specified. Therefore, to tackle this issue, we conducted the current research from the behavioral and neural level. Study 1 used the general meta-analysis method to explore whether individuals display the same gender differences in large- and small-scale spatial ability. Study 2 used the method of Activation Likelihood Estimation to identify the commonalities and distinctions of the brain activity between males and females on large- and small-scale spatial ability. Study 1 showed that in behavior performance, males outperformed females in both large-scale and small-scale spatial ability, but the effect size of the gender difference in large-scale spatial ability is significantly greater than that in small-scale spatial ability. In addition, Study 2 showed that in terms of neural activity, males and females exhibited both similarities and differences no matter in large-scale or small-scale spatial ability. Especially, the contrast analysis between females and males demonstrated a stronger activation in the brain regions of bilateral lentiform nucleus and bilateral parahippocampal gyrus in large-scale spatial ability, and correspondence in right sub-gyral, right precuneus, and left middle frontal gyrus in small-scale spatial ability. The results indicated that the reason why females performed not so well in large-scale spatial ability was that they were more susceptible to emotions and their parahippocampal gyrus worked less efficiently than males; females performed not so well in small-scale spatial ability because they mostly adopted the egocentric strategy and their sub-gyral also worked less efficiently than males. The two different reasons have made for gender differences in favor of males in terms of spatial ability and such gender differences have different manifestations in large-scale and small-scale spatial ability. Possible implications of the results for understanding the issue of gender differences in spatial ability are discussed.
Differential effects of aging on spatial abilities
Visuospatial functions are particularly vulnerable to the aging process. Decline of these processes can seriously affect an individual’s functional independence and quality of life. Effectively assessing the spatial abilities of older adults is, therefore, crucial for identifying strategies to maintain cognitive functioning. The purpose of the present study was to use ecological tasks more comparable to activities of daily living to assess spatial ability in older adults. Three hands-on tasks (a visual search task, a low- and a high-mental rotation demand tasks) and a version of the well-known paper-based mental rotation of figures test (Shepard and Metzler, Science 171(3972):701–703, 1971) were given to 60–79-year-old female and male participants. The hands-on tasks required participants to locate, manipulate, and arrange real objects (i.e., toy bricks) in space. Age had a negative impact on visual search but not on mental rotation ability. Male participants outperformed females in the mental rotation tasks, but a trend for the opposite (better performance by females) was found for the visual search task. The results suggest that spatial abilities are not a monolithic construct and that sub-categories of this construct are affected by age and by sex differently. While visual search function is susceptible to decline during old age, mental rotation ability is not. In addition, unlike the paper-based test, the hands-on tasks were found to be age-appropriate with a feasible level of difficulty for all participants. The hands-on tasks may be more appealing as a tool to evaluate, maintain, and/or enhance spatial function in older adults.
Mapping my day
\"A little girl loves drawing maps -- of her buried treasure, the breakfast table, the route to school, and more -- taking the reader on a journey through her day; a story told in maps. This book inspires readers to create their own maps and diagrams, gaining practice in making drawings with meaningful spatial relationships. Includes note to parents and mapping activities\"-- Provided by publisher.
Sex differences in visuospatial and navigational working memory: the role of mood induced by background music
Sex differences in visuospatial abilities are long debated. Men generally outperform women, especially in wayfinding or learning a route or a sequence of places. These differences might depend on women’s disadvantage in underlying spatial competences, such as mental rotation, and on the strategies used, as well as on emotions and on self-belief about navigational skills, not related to actual skill-levels. In the present study, sex differences in visuospatial and navigational working memory in emotional contexts were investigated. Participants’ mood was manipulated by background music (positive, negative or neutral) while performing on the Corsi Block-tapping Task (CBT) and Walking Corsi (WalCT) test. In order to assess the effectiveness of mood manipulation, participants filled in the Positive and Negative Affect Schedule before and after carrying out the visuospatial tasks. Firstly, results showed that after mood induction, only the positive affect changed, whereas the negative affect remained unconfounded by mood and by sex. This finding is in line with the main effect of ‘group’ on all tests used: the positive music group scored significantly higher than other groups. Secondly, although men outperformed women in the CBT forward condition and in the WalCT forward and backward conditions, they scored higher than women only in the WalCT with the negative background music. This means that mood cannot fully explain sex differences in visuospatial and navigational working memory. Our results suggest that sex differences in the CBT and WalCT can be better explained by differences in spatial competences rather than by emotional contexts.
Language Performance of Individuals at Risk for Mild Cognitive Impairment
Purpose: Evidence exists that changes in language performance may be an early indicator of mild cognitive impairment (MCI), often a harbinger of dementing disease. The purpose of this study was the evaluation of language performance in individuals at risk for MCI by virtue of age and self-concern and its relation to performance on tests of memory, visuospatial function, and mental status. Method: Eighty-three individuals 55 years or older were administered the Arizona Battery for Communication Disorders of Dementia (Bayles & Tomoeda, 1993), a standardized battery with normative data from 86 healthy older adults (HOAs) and 86 individuals with Alzheimer's dementia, the most common dementing disease. A performance criterion of 1-1.5 \"SD\"s below the mean of HOAs defined MCI, as recommended in the \"Diagnostic and Statistical Manual of Mental Disorders, Fifth Edition.\" We hypothesized that (a) the majority of at-risk participants would score 1 \"SD\" or more below the mean of HOAs on 1 or more subtests and (b) language performance tests would present a greater challenge than memory, mental status, and visuospatial construction tests. Results: Both hypotheses were confirmed. Sixty-two participants (74.6%) met the \"Diagnostic and Statistical Manual of Mental Disorders, Fifth Edition,\" criteria on at least 1 subtest. Moreover, language subtests were those most likely to elicit a performance 1 SD or more below the mean of HOAs. Conclusions: Language performance deficits can appear early before impairment in episodic memory, visuospatial construction ability, or mental status in individuals at risk for MCI. Speech-language pathologists are uniquely qualified to identify subtle changes in language, and standardized language tests with normative data should be used when testing for MCI.
Block Design Performance in Williams Syndrome: Visuospatial Abilities or Task Approach Skills?
The block design task (BDT) is a visuospatial measure that individuals with Williams syndrome (WS) perform poorly on. However, it is unclear what underlies their impaired performance. This study investigated whether poorer performance is a result of visuospatial difficulties, executive function (EF) difficulties, atypical looking strategies, or a combination of these. Eleven individuals with WS participated alongside mental age (MA)- and chronological age (CA)-matched control groups. Eye movements were recorded while they took the BDT. Dwell times and visits to areas of interest in WS differed from CA, but not MA, groups. Findings suggest that BDT abilities of individuals with WS are delayed, but not atypical. Delays result from visuospatial and attention-switching difficulties rather than atypical looking strategies.