Validation of the Tactual Span in individuals with congenital and acquired blindness

Aleman, A., van Lee, L., Mantione, M. H., Verkoijen, I. G., de Haan, E. H. F. (2001). Visual imagery without visual experience: Evidence from congenitally totally blind people. NeuroReport, 12(11), 2601–2604.
Google Scholar | Crossref | Medline Atkins, S. (2012). Assessing the ability of blind and partially sighted people: Are psychometric tests fair? RNIB Centre for Accessible Information.
Google Scholar Baddeley, A. (2000). The episodic buffer: A new component of working memory? Trends in Cognitive Sciences, 4(11), 417–423. https://doi.org/10.1016/S1364-6613(00)01538-2
Google Scholar Baddeley, A. (2012). Working memory: Theories, models, and controversies. Annual Review of Psychology, 63, 1–29. https://doi.org/10.1146/annurev-psych-120710-100422
Google Scholar Baddeley, A., Hitch, G. J. (1974). Working memory. In Bower, G. A. (Ed.), The psychology of learning and motivation (pp. 47–89). Academic Press.
Google Scholar | Crossref Baron, H. (2006). Visual impairment and psychometric testing: Practical advice for test users managing the testing of people who have sight disabilities. The British Psychological Society. https://ptc.bps.org.uk/sites/ptc.bps.org.uk/files/guidance_documents/ptc23_visual_impairment_0.pdf
Google Scholar Bliss, I., Kujala, T., Hämäläinen, H. (2004). Comparison of blind and sighted participants’ performance in a letter recognition working memory task. Cognitive Brain Research, 18(3), 273–277. https://doi.org/10.1016/j.cogbrainres.2003.10.012
Google Scholar Burton, H., Sinclair, R. J., Dixit, S. (2010). Working memory for vibrotactile frequencies: Comparison of cortical activity in blind and sighted individuals. Human Brain Mapping, 31(11), 1686–1701. https://doi.org/10.1002/hbm.20966
Google Scholar Cattaneo, Z., Vecchi, T. (2008). Supramodality effects in visual and haptic spatial processes. Journal of Experimental Psychology: Learning Memory and Cognition, 34(3), 631–642. https://doi.org/10.1037/0278-7393.34.3.631
Google Scholar Cattaneo, Z., Vecchi, T., Cornoldi, C., Mammarella, I., Bonino, D., Ricciardi, E., Pietrini, P. (2008). Imagery and spatial processes in blindness and visual impairment. Neuroscience and Biobehavioral Reviews, 32(8), 1346–1360. https://doi.org/10.1016/j.neubiorev.2008.05.002
Google Scholar Chen, M. S., Huang, C. K., Wang, C. N. (2010). Working memory for spatial construction in blind and sighted individuals. Journal of the Chinese Institute of Industrial Engineers, 27(3), 199–208. https://doi.org/10.1080/10170660903546723
Google Scholar Cimera, R. E., Rumrill, P. D., Chan, F., Kaya, C., Bezyak, J. (2015). Vocational rehabilitation services and outcomes for transition-age youth with visual impairments and blindness. Journal of Vocational Rehabilitation, 43(2), 103–111. https://doi.org/10.3233/JVR-150760
Google Scholar Cohen, H., Scherzer, P., Viau, R., Voss, P., Lepore, F. (2011). Working memory for Braille is shaped by experience. Communicative and Integrative Biology, 4(2), 227–229. https://doi.org/10.4161/cib.4.2.14546
Google Scholar Cohen, H., Voss, P., Lepore, F., Scherzer, P. (2010). The nature of working memory for Braille. PLoS One, 5(5), Article e10833. https://doi.org/10.1371/journal.pone.0010833
Google Scholar Cornoldi, C., Cortesi, A., Preti, D. (1991). Individual differences in the capacity limitations of visuospatial short-term memory: Research on sighted and totally congenitally blind people. Memory & Cognition, 19(5), 459–468. https://doi.org/10.3758/BF03199569
Google Scholar Cornoldi, C., Tinti, C., Mammarella, I. C., Re, A. M., Varotto, D. (2009). Memory for an imagined pathway and strategy effects in sighted and in totally congenitally blind individuals. Acta Psychologica, 130(1), 11–16. https://doi.org/10.1016/j.actpsy.2008.09.012
Google Scholar Cornoldi, C., Vecchi, T. (2004). Imagery, blindness, and visuo-spatial working memory. In Cornoldi, C., Vecchi, T. (Eds.), Visuo-spatial working memory and individual differences (pp. 95–106). Psychology Press.
Google Scholar | Crossref Cowan, N. (2005). Working memory capacity. Psychology Press.
Google Scholar | Crossref Dormal, V., Crollen, V., Baumans, C., Lepore, F., Collignon, O. (2016). Early but not late blindness leads to enhanced arithmetic and working memory abilities. Cortex, 83, 212–221. https://doi.org/10.1016/j.cortex.2016.07.016
Google Scholar Engle, R. W. (2002). Working memory capacity as executive attention. Current Directions in Psychological Science, 11(1), 19–23. https://doi.org/10.1111/1467-8721.00160
Google Scholar Fan, X., Thompson, B., Wang, L. (1999). Effects of sample size, estimation methods, and model specification on structural equation modeling fit indexes. Structural Equation Modeling, 6(1), 56–83. https://doi.org/10.1080/10705519909540119
Google Scholar Fernandes, A. M., Albuquerque, P. B. (2012). Tactual perception: A review of experimental variables and procedures. Cognitive Processing, 13(4), 285–301. https://doi.org/10.1007/s10339-012-0443-2
Google Scholar Ginty, A. T. (2013). Construct validity. In Gellman, M. D., Turner, J. R. (Eds.), Encyclopedia of behavioral medicine. Springer. https://doi.org/10.1007/978-1-4419-1005-9_861
Google Scholar Gogulski, J., Zetter, R., Nyrhinen, M., Pertovaara, A., Carlson, S. (2017). Neural substrate for metacognitive accuracy of tactile working memory. Cerebral Cortex, 27(11), 5343–5352. https://doi.org/10.1093/cercor/bhx219
Google Scholar Harris, J. A., Miniussi, C., Harris, I. M., Diamond, M. E. (2002). Transient storage of a tactile memory trace in primary somatosensory cortex. The Journal of Neuroscience, 22(19), 8720–8725. https://doi.org/10.1523/JNEUROSCI.22-19-08720.2002
Google Scholar Heled, E., Rotberg, S., Yavich, R., Hoofien, A. D. (2020). Introducing the Tactual Span: A new task for assessing working memory in the Teactile Modality. Assessment, 28(3), 1018–1031. https://doi.org/10.1177/1073191120949929
Google Scholar Johnson, L. L., Kelly, S. (2020). Student predispositions as predictors of dissent behaviors in supply chain courses. Decision Sciences Journal of Innovative Education, 18(2), 270–290. https://doi.org/10.1111/dsji.12201
Google Scholar Kaas, A. L., van Mier, H., Visser, M., Goebel, R. (2013). The neural substrate for working memory of tactile surface texture. Human Brain Mapping, 34(5), 1148–1162. https://doi.org/10.1002/hbm.21500
Google Scholar Kärnekull, S. C., Arshamian, A., Nilsson, M. E., Larsson, M. (2016). From perception to metacognition: Auditory and olfactory functions in early blind, late blind, and sighted individuals. Frontiers in Psychology, 7, Article 1450. https://doi.org/10.3389/fpsyg.2016.01450
Google Scholar Katus, T., Müller, M. M., Eimer, M. (2015). Sustained maintenance of somatotopic information in brain regions recruited by tactile working memory. Journal of Neuroscience, 35(4), 1390–1395. https://doi.org/10.1523/JNEUROSCI.3535-14.2015
Google Scholar Kavé, G., Knafo-Noam, A. (2015). Lifespan development of phonemic and semantic fluency: Universal increase, differential decrease. Journal of Clinical and Experimental Neuropsychology, 37(7), 751–763. https://doi.org/10.1080/13803395.2015.1065958
Google Scholar Lakens, D. (2021). Sample size justification. https://doi.org/10.31234/osf.io/9d3yf
Google Scholar Lawson, R., Fernandes, A. M., Albuquerque, P. B., Lacey, S. (2015). Remembering touch: Using interference tasks to study tactile and haptic memory. In Jolicoeur, P., Lefebvre, C., Martinez-Trujillo, J. (Eds.), Mechanisms of sensory working memory: Attention and performance XXV (pp. 239–259). Elsevier Academic Press. https://doi.org/10.1016/B978-0-12-801371-7.00019-3
Google Scholar Lezak, M. D., Howieson, D. B., Bigler, E. D., Tranel, D. (2012). Neuropsychological assessment (5th ed.). Oxford University Press.
Google Scholar Marmor, G. S., Zaback, L. A. (1976). Mental rotation by the blind: Does mental rotation depend on visual imagery? Journal of Experimental Psychology: Human Perception and Performance, 2(4), 515–521. https://doi.org/10.1037/0096-1523.2.4.515
Google Scholar Mazella, A., Albaret, J. M., Picard, D. (2014). Haptic tests for use with children and adults with visual impairments: A literature review. Journal of Visual Impairment & Blindness, 108(3), 227–237. https://doi.org/10.1177/0145482x1410800306
Google Scholar Mazella, A., Albaret, J. M., Picard, D. (2016). Haptic-2D: A new haptic test battery assessing the tactual abilities of sighted and visually impaired children and adolescents with two-dimensional raised materials. Research in Developmental Disabilities, 48, 103–123. https://doi.org/10.1016/j.ridd.2015.10.012
Google Scholar Miller, J. C., Skillman, G. D. (2003). Assessors’ satisfaction with measures of cognitive ability applied to persons with visual impairments. Journal of Visual Impairment & Blindness, 97(12), 769–774.
Google Scholar | SAGE Journals Miller, J. C., Skillman, G. D., Benedetto, J. M., Holtz, A. M., Nassif, C. L., Weber, A. D. (2007). A three-dimensional haptic matrix test of nonverbal reasoning. Journal of Visual Impairment & Blindness, 101(9), 557–570. https://doi.org/10.1177/0145482X0710100905
Google Scholar Minks, A., Williams, H., Basille, K. (2020). A critique of the use of psychometric assessments with visually impaired children and young people. Educational Psychology in Practice, 36(2), 170–192. https://doi.org/10.1080/02667363.2020.1724894
Google Scholar Morgan, C. J. (2017). Use of proper statistical techniques for research studies with small samples. American Journal of Physiology, Lung Cellular and Molecular Physiology, 313(5), L873–L877. https://doi.org/10.1152/ajplung.00238.2017
Google Scholar Nicholas, J. T., Johannessen, A. M., van Nunen, T. (2019). Tactile Working Memory Scale. Nordic Welfare Centre.
Google Scholar Oberauer, K., Lewandowsky, S., Awh, E., Brown, G. D. A., Conway, A. R. A., Cowan, N., Donkin, C., Farrell, S., Hitch, G. J., Hurlstone, M. J., Ma, W. J., Morey, C. C., Nee, D., Schweppe, J., Vergauwe, E., Ward, G. (2018). Benchmarks for models of short term and working memory. Psychological Bulletin, 144(9), 885–958. https://doi.org/10.1037/h0021468
Google Scholar Occelli, V., Lacey, S., Stephens, C., Merabet, L. B., Sathian, K. (2017). Enhanced verbal abilities in the congenitally blind. Experimental Brain Research, 235(6), 1709–1718. https://doi.org/10.1007/s00221-017-4931-6
Google Scholar Occelli, V., Lin, J. B., Lacey, S., Sathian, K. (2014). Loss of form vision impairs spatial imagery. Frontiers in Human Neuroscience, 8, Article 159. https://doi.org/10.3389/fnhum.2014.00159
Google Scholar Papagno, C., Minniti, G., Mattavelli, G. C., Mantovan, L., Cecchetto, C. (2017). Tactile short-term memory in sensory-deprived individuals. Experimental Brain Research, 235(2), 471–480. https://doi.org/10.1007/s00221-016-4808-0
Google Scholar Picard, D., Lebaz, S., Jouffrais, C., Monnier, C. (2010). Haptic recognition of two-dimensional raised-line patterns by early-blind, late-blind, and blindfolded sighted adults. Perception, 39(2), 224–235. https://doi.org/10.1068/p6527
Google Scholar Pigeon, C., Marin-Lamellet, C. (2015). Evaluation of the attentional capacities and working memory of early and late blind persons. Acta Psychologica, 155, 1–7. https://doi.org/10.1016/j.actpsy.2014.11.010
Google Scholar Rączy, K., Korczyk, M. (2018). Are IQ tests enough to measure intelligence in the blind? Brief review of available and potential methods to estimate intelligence in the blind. Rocznik Kognitywistyczny, 11, 17–34. https://doi.org/10.4467/20843895rk.18.002.9756
Google Scholar Ricciardi, E., Bonino, D., Gentili, C., Sani, L., Pietrini, P., Vecchi, T. (2006). Neural correlates of spatial working memory in humans: A functional magnetic resonance imaging study comparing visual and tactile processes. Neuroscience, 139(1), 339–349. https://doi.org/10.1016/j.neuroscience.2005.08.045
Google Scholar Rokem, A., Ahissar, M. (2009). Interactions of cognitive and auditory abilities in congenitally blind individuals. Neuropsychologia, 47(3), 843–848. https://doi.org/10.1016/j.neuropsychologia.2008.12.017
Google Scholar Ruggiero, G., Iachini, T. (2010). The role of vision in the Corsi block-tapping task: Evidence from blind and sighted people. Neuropsychology, 24(5), 674–679. https://doi.org/10.1037/a0019594
Google Scholar Snyder, H. R., Miyake, A., Hankin, B. L. (2015). Advancing understanding of executive function impairments and psychopathology: Bridging the gap between clinical and cognitive approaches. Frontiers in Psychology, 6, Article 328. https://doi.org/10.3389/fpsyg.2015.00328
Google Scholar Sommerfield, A. J., Deary, I. J., McAulay, V., Frier, B. M. (2003). Moderate hypoglycemia impairs multiple memory functions in healthy adults. Neuropsychology, 17(1), 125–132. https://doi.org/10.1037/0894-4105.17.1.125
Google Scholar Taherdoost, H. (2016). Validity and reliability of the research instrument; how to test the validation of a questionnaire/survey in a research. International Journal of Academic Research in Management, 5(3), 28–36.
Google Scholar Tobin, M. J., Hill, E. W. (2011). Issues in the educational, psychological assessment of visually impaired children: Test-retest reliability of the Williams Intelligence Test for children with defective vision. The British Journal of Visual Impairment, 29(3), 208–214. https://doi.org/10.1177/0264619611415333
Google Scholar Van Erp, J. B., Kyung, K. U., Kassner, S., Carter, J., Brewster, S., Weber, G., Andrew, I. (2010). Haptics: Generating and perceiving tangible sensations. In International Conference on Human Haptic Sensing and Touch Enabled Computer Applications (pp. 353–358). https://doi.org/10.1007/978-3-642-14075-4
Google Scholar Vecchi, T. (1998). Visuo-spatial Imagery in congenitally totally blind people. Memory, 6(1), 91–102. https://doi.org/10.1080/741941601
Google Scholar Vecchi, T. (2001). Visuo-spatial processing in congenitally blind people: Is there a gender-related preference? Personality and Individual Differences, 30(8), 1361–1370.
Google Scholar | Crossref Vecchi, T., Monticellai, M. L., Cornoldi, C. (1995). Visuo-spatial working memory: Structures and variables affecting a capacity measure. Neuropsychologia, 33(11), 1549–1564. https://doi.org/10.1016/0028-3932(95)00080-M
Google Scholar Vecchi, T., Tinti, C., Cornoldi, C. (2004). Spatial memory and integration processes in congenital blindness. NeuroReport, 15(18), 2787–2790.
Google Scholar | Medline Wakefield, C. E., Homewood, J., Taylor, A. J. (2006). Early blindness may be associated with changes in performance on verbal fluency tasks. Journal of Visual Impairment & Blindness, 100(5), 306–310.
Google Scholar | SAGE Journals Wan, C. Y., Wood, A. G., Reutens, D. C., Wilson, S. J. (2010). Early but not late-blindness leads to enhanced auditory perception. Neuropsychologia, 48(1), 344–348. https://doi.org/10.1016/j.neuropsychologia.2009.08.016
Google Scholar Wechsler, D. (1997). Wechsler Adult Intelligence Scale (3rd ed.). Psychological Corporation.
Google Scholar Withagen, A., Kappers, A. M. L., Vervloed, M. P. J., Knoors, H., Verhoeven, L. (2013). Short term memory and working memory in blind versus sighted children. Research in Developmental Disabilities, 34(7), 2161–2172. https://doi.org/10.1016/j.ridd.2013.03.028
Google Scholar Zarino, B., Crespi, M., Launi, M., Casarotti, A. (2014). A new standardization of semantic verbal fluency test. Neurological Sciences, 35(9), 1405–1411. https://doi.org/10.1007/s10072-014-1729-1
Google Scholar Zhao, D., Zhou, Y.-D., Bodner, M., Ku, Y. (2018). The causal role of the prefrontal cortex and somatosensory cortex in tactile working memory. Cerebral Cortex, 28(10), 3468–3477. https://doi.org/10.1093/cercor/bhx213
Google Scholar

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