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State anxiety modulates the effect of emotion cues on visual temporal sensitivity in autism spectrum disorder.

Chakrabarty, M ; Atsumi, T ; et al.
In: The European journal of neuroscience, Jg. 54 (2021-07-01), Heft 2, S. 4682-4694
Online academicJournal

Titel:
State anxiety modulates the effect of emotion cues on visual temporal sensitivity in autism spectrum disorder.
Autor/in / Beteiligte Person: Chakrabarty, M ; Atsumi, T ; Kaneko, A ; Fukatsu, R ; Ide, M
Link:
Zeitschrift: The European journal of neuroscience, Jg. 54 (2021-07-01), Heft 2, S. 4682-4694
Veröffentlichung: <Feb. 2006-> : Oxford : Wiley-Blackwell ; <i>Original Publication</i>: Oxford, UK : Published on behalf of the European Neuroscience Association by Oxford University Press, c1989-, 2021
Medientyp: academicJournal
ISSN: 1460-9568 (electronic)
DOI: 10.1111/ejn.15311
Schlagwort:
  • Anxiety
  • Anxiety Disorders
  • Emotions
  • Humans
  • Autism Spectrum Disorder
  • Cues
Sonstiges:
  • Nachgewiesen in: MEDLINE
  • Sprachen: English
  • Publication Type: Journal Article
  • Language: English
  • [Eur J Neurosci] 2021 Jul; Vol. 54 (2), pp. 4682-4694. <i>Date of Electronic Publication: </i>2021 Jun 07.
  • MeSH Terms: Autism Spectrum Disorder* ; Cues* ; Anxiety ; Anxiety Disorders ; Emotions ; Humans
  • References: Addolorato, G., Ancona, C., Capristo, E., Graziosetto, R., Di Rienzo, L., Maurizi, M., & Gasbarrini, G. (1999). State and trait anxiety in women affected by allergic and vasomotor rhinitis. Journal of Psychosomatic Research, 46(3), 283-289. https://doi.org/10.1016/S0022-3999(98)00109-3. ; Adolphs, R. (2010). What does the amygdala contribute to social cognition? In Annals of the New York Academy of Sciences, 1191(1), 42-61. https://doi.org/10.1111/j.1749-6632.2010.05445.x. ; Allen, M., Frank, D., Samuel Schwarzkopf, D., Fardo, F., Winston, J. S., Hauser, T. U., & Rees, G. (2016). Unexpected arousal modulates the influence of sensory noise on confidence. eLife, 5, e18103. https://doi.org/10.7554/eLife.18103. ; American Psychiatric Association. (2013). Diagnostic and statistical manual of mental disorders, 5th Edition. In Diagnostic and statistical manual of mental disorders (5th ed). American Psychiatric Association. https://doi.org/10.1176/appi.books.9780890425596.744053. ; Amir, N., Weber, G., Beard, C., Bomyea, J., & Taylor, C. T. (2008). The effect of a single-session attention modification program on response to a public-speaking challenge in socially anxious individuals. Journal of Abnormal Psychology, 117(4), 860-868. https://doi.org/10.1037/a0013445. ; Amstadter, A. (2008). Emotion regulation and anxiety disorders. Journal of Anxiety Disorders, 22(2), 211-221. https://doi.org/10.1016/j.janxdis.2007.02.004. ; Anderson, C. J., Colombo, J., & Unruh, K. E. (2013). Pupil and salivary indicators of autonomic dysfunction in autism spectrum disorder. Developmental Psychobiology, 55(5), 465-482. https://doi.org/10.1002/dev.21051. ; Annaz, D., Remington, A., Milne, E., Coleman, M., Campbell, R., Thomas, M. S. C., & Swettenham, J. (2010). Development of motion processing in children with autism. Developmental Science, 13(6), 826-838. https://doi.org/10.1111/j.1467-7687.2009.00939.x. ; Aston-Jones, G., & Cohen, J. D. (2005). An integrative theory of locus coeruleus-norepinephrine function: Adaptive Gain and Optimal Performance. Annual Review of Neuroscience, 28(1), 403-450. https://doi.org/10.1146/annurev.neuro.28.061604.135709. ; Baranek, G. T., Little, L. M., Parham, L. D., Ausderau, K. K., & Sabatos-DeVito, M. G. (2014). Sensory features in autism spectrum disorders. In Handbook of autism and pervasive developmental disorders (4th ed., Issue c, pp. 378-407). Wiley. https://doi.org/10.1002/9781118911389.hautc16. ; Barbot, A., & Carrasco, M. (2018). Emotion and anxiety potentiate the way attention alters visual appearance. Scientific Reports, 8(1), https://doi.org/10.1038/s41598-018-23686-8. ; Baron-Cohen, S., Wheelwright, S., Skinner, R., Martin, J., & Clubley, E. (2001). The Autism-Spectrum Quotient (AQ): Evidence from Asperger syndrome/high-functioning autism, males and females, scientists and mathematicians. Journal of Autism and Developmental Disorders, 31(1), 5-17. https://doi.org/10.1023/A:1005653411471. ; Ben-Sasson, A., Hen, L., Fluss, R., Cermak, S. A., Engel-Yeger, B., & Gal, E. (2009). A meta-analysis of sensory modulation symptoms in individuals with autism spectrum disorders. Journal of Autism and Developmental Disorders, 39(1), 1-11. https://doi.org/10.1007/s10803-008-0593-3. ; Berggren, N., Curtis, H. M., & Derakshan, N. (2017). Interactions of emotion and anxiety on visual working memory performance. Psychonomic Bulletin and Review, 24(4), 1274-1281. https://doi.org/10.3758/s13423-016-1213-4. ; Bertone, A., Mottron, L., Jelenic, P., & Faubert, J. (2005). Enhanced and diminished visuo-spatial information processing in autism depends on stimulus complexity. Brain, 128(10), 2430-2441. https://doi.org/10.1093/brain/awh561. ; Blake, R., Turner, L. M., Smoski, M. J., Pozdol, S. L., & Stone, W. L. (2003). Visual recognition of biological motion is impaired in children with autism. Psychological Science, 14(2), 151-157. https://doi.org/10.1111/1467-9280.01434. ; Bocanegra, B. R., & Zeelenberg, R. (2009). Emotion improves and impairs early vision. Psychological Science, 20(6), 707-713. https://doi.org/10.1111/j.1467-9280.2009.02354.x. ; Bocanegra, B. R., & Zeelenberg, R. (2011). Emotional cues enhance the attentional effects on spatial and temporal resolution. Psychonomic Bulletin and Review, 18(6), 1071-1076. https://doi.org/10.3758/s13423-011-0156-z. ; Brainard, D. H. (1997). The psychophysics toolbox. Spatial Vision, 10(4), 433-436. https://doi.org/10.1163/156856897X00357. ; Chakrabarty, M., & Wada, M. (2020). Perceptual effects of fast and automatic visual ensemble statistics from faces in individuals with typical development and autism spectrum conditions. Scientific Reports, 10, 2169. https://doi.org/10.1038/s41598-020-58971-y. ; Chapman, H. A., & Anderson, A. K. (2012). Understanding disgust. Annals of the New York Academy of Sciences, 1251(1), 62-76. https://doi.org/10.1111/j.1749-6632.2011.06369.x. ; Coggan, D. D., Allen, L. A., Farrar, O. R. H., Gouws, A. D., Morland, A. B., Baker, D. H., & Andrews, T. J. (2017). Differences in selectivity to natural images in early visual areas (V1-V3). Scientific Reports, 7, 2444. https://doi.org/10.1038/s41598-017-02569-4. ; Critchley, H. D., & Harrison, N. A. (2013). Visceral influences on brain and behavior. Neuron, 77(4), 624-638. https://doi.org/10.1016/j.neuron.2013.02.008. ; Dakin, S., & Frith, U. (2005). Vagaries of visual perception in autism. Neuron, 48(3), 497-507. https://doi.org/10.1016/j.neuron.2005.10.018. ; Eilam-Stock, T., Xu, P., Cao, M., Gu, X., Van Dam, N. T., Anagnostou, E., Kolevzon, A., Soorya, L., Park, Y., Siller, M., He, Y., Hof, P. R., & Fan, J. (2014). Abnormal autonomic and associated brain activities during rest in autism spectrum disorder. Brain, 137(1), 153-171. https://doi.org/10.1093/brain/awt294. ; Falter, C. M., Elliott, M. A., & Bailey, A. J. (2012). Enhanced visual temporal resolution in autism spectrum disorders. PLoS One, 7(3), e32774. https://doi.org/10.1371/journal.pone.0032774. ; Ferneyhough, E., Kim, M. K., Phelps, E. A., & Carrasco, M. (2013). Anxiety modulates the effects of emotion and attention on early vision. Cognition and Emotion, 27(1), 166-176. https://doi.org/10.1080/02699931.2012.689953. ; Fitzgerald, D. A., Angstadt, M., Jelsone, L. M., Nathan, P. J., & Phan, K. L. (2006). Beyond threat: Amygdala reactivity across multiple expressions of facial affect. NeuroImage, 30(4), 1441-1448. https://doi.org/10.1016/j.neuroimage.2005.11.003. ; Flykt, A., Lundqvist, D., Flykt, A., & Öhman, A. (1998). The Karolinska directed emotional faces (KDEF). CD ROM from Department of Clinical Neuroscience, Psychology Section, Karolinska Institutet, https://doi.org/10.1017/S0048577299971664. ; Forsberg, C., & Björvell, H. (1993). Swedish population norms for the GHRI, HI and STAI-state. Quality of Life Research, 2(5), 349-356. https://doi.org/10.1007/BF00449430. ; Gogolla, N. (2017). The insular cortex. Current Biology, 27(12), R580-R586. https://doi.org/10.1016/j.cub.2017.05.010. ; Greenberg, T., Bertocci, M. A., Chase, H. W., Stiffler, R., Aslam, H. A., Graur, S., Bebko, G., Lockovich, J. C., & Phillips, M. L. (2017). Mediation by anxiety of the relationship between amygdala activity during emotion processing and poor quality of life in young adults. Translational Psychiatry, 7(7), e1178. https://doi.org/10.1038/tp.2017.127. ; Groppe, D. M., Urbach, T. P., & Kutas, M. (2011). Mass univariate analysis of event-related brain potentials/fields I: A critical tutorial review. Psychophysiology, 48(12), 1711-1725. https://doi.org/10.1111/j.1469-8986.2011.01273.x. ; Herrington, J. D., Maddox, B. B., McVey, A. J., Franklin, M. E., Yerys, B. E., Miller, J. S., & Schultz, R. T. (2017). Negative valence in autism spectrum disorder: The relationship between amygdala activity, selective attention, and co-occurring anxiety. Biological Psychiatry: Cognitive Neuroscience and Neuroimaging, 2(6), 510-517. https://doi.org/10.1016/j.bpsc.2017.03.009. ; Hirsh, I. J., & Sherrick, C. E. (1961). Perceived order in different sense modalities. Journal of Experimental Psychology, 62(5), 423-432. https://doi.org/10.1037/h0045283. ; Hirstein, W., Iversen, P., & Ramachandran, V. S. (2001). Autonomic responses of autistic children to people and objects. Proceedings of the Royal Society B: Biological Sciences, 268(1479), 1883-1888. https://doi.org/10.1098/rspb.2001.1724. ; Hoehn-Saric, R., & McLeod, D. R. (2000). Anxiety and arousal: Physiological changes and their perception. Journal of Affective Disorders, 61(3), 217-224. https://doi.org/10.1016/S0165-0327(00)00339-6. ; Hubert, W., & de Jong-Meyer, R. (1990). Psychophysiological response patterns to positive and negative film stimuli. Biological Psychology, 31(1), 73-93. https://doi.org/10.1016/0301-0511(90)90079-C. ; Ide, M., Yaguchi, A., Sano, M., Fukatsu, R., & Wada, M. (2019). Higher tactile temporal resolution as a basis of hypersensitivity in individuals with autism spectrum disorder. Journal of Autism and Developmental Disorders, 49(1), 44-53. https://doi.org/10.1007/s10803-018-3677-8. ; Japanese WAIS-III Publication Committee. (2006). Nihonban WAIS-III chinou kensahou (Japanese Wechsler Adult Intelligence Scale 3rd ed). Nihon Bunka Kagakusya. ; Jaśkowski, P. (1991). Two-stage model for order discrimination. Perception & Psychophysics, 50(1), 76-82. https://doi.org/10.3758/BF03212206. ; Jolliffe, T., & Baron-Cohen, S. (1997). Are people with autism and Asperger syndrome faster than normal on the Embedded Figures Test? Journal of Child Psychology and Psychiatry and Allied Disciplines, 38(5), 527-534. https://doi.org/10.1111/j.1469-7610.1997.tb01539.x. ; Jones, C. R. G., Lambrechts, A., & Gaigg, S. B. (2017). Using Time perception to explore implicit sensitivity to emotional stimuli in autism spectrum disorder. Journal of Autism and Developmental Disorders, 47(7), 2054-2066. https://doi.org/10.1007/s10803-017-3120-6. ; Kanat, M., Spenthof, I., Riedel, A., Van Elst, L. T., Heinrichs, M., & Domes, G. (2017). Restoring effects of oxytocin on the attentional preference for faces in autism. Translational Psychiatry, 7(4), e1097. https://doi.org/10.1038/tp.2017.67. ; Kitazawa, M., Yoshimura, M., Murata, M., Sato-Fujimoto, Y., Hitokoto, H., Mimura, M., Tsubota, K., & Kishimoto, T. (2018). Associations between problematic Internet use and psychiatric symptoms among university students in Japan. Psychiatry and Clinical Neurosciences, 72(7), 531-539. https://doi.org/10.1111/pcn.12662. ; Knight, R. G., Waal Manning, H. J., & Spears, G. F. (1983). Some norms and reliability data for the State-Trait Anxiety Inventory and the Zung Self-Rating Depression scale. British Journal of Clinical Psychology, 22(4), 245-249. https://doi.org/10.1111/j.2044-8260.1983.tb00610.x. ; Kuefner, D., de Heering, A., Jacques, C., Palmero-Soler, E., & Rossion, B. (2010). Early visually evoked electrophysiological responses over the human brain (P1, N170) show stable patterns of face-sensitivity from 4 years to adulthood. Frontiers in Human Neuroscience, 3, 67. https://doi.org/10.3389/neuro.09.067.2009. ; Kylliäinen, A., & Hietanen, J. K. (2006). Skin conductance responses to another person’s gaze in children with autism. Journal of Autism and Developmental Disorders, 36(4), 517-525. https://doi.org/10.1007/s10803-006-0091-4. ; LeDoux, J. (2007). The amygdala. Current Biology, 17(20), R868-R874. https://doi.org/10.1016/j.cub.2007.08.005. ; Mathersul, D., McDonald, S., & Rushby, J. A. (2013). Automatic facial responses to affective stimuli in high-functioning adults with autism spectrum disorder. Physiology and Behavior, 109(1), 14-22. https://doi.org/10.1016/j.physbeh.2012.10.008. ; Matsushima, K., Matsubayashi, J., Toichi, M., Funabiki, Y., Kato, T., Awaya, T., & Kato, T. (2016). Unusual sensory features are related to resting-state cardiac vagus nerve activity in autism spectrum disorders. Research in Autism Spectrum Disorders, 25, 37-46. https://doi.org/10.1016/j.rasd.2015.12.006. ; Matthews, W. J., & Meck, W. H. (2016). Temporal cognition: Connecting subjective time to perception, attention, and memory. Psychological Bulletin, 142(8), 865-907. https://doi.org/10.1037/bul0000045. ; Mauk, M. D., & Buonomano, D. V. (2004). The neural basis of temporal processing. Annual Review of Neuroscience, 27(1), 307-340. https://doi.org/10.1146/annurev.neuro.27.070203.144247. ; McCormick, C., Hepburn, S., Young, G. S., & Rogers, S. J. (2016). Sensory symptoms in children with autism spectrum disorder, other developmental disorders and typical development: A longitudinal study. Autism, 20(5), 572-579. https://doi.org/10.1177/1362361315599755. ; Ming, X., Julu, P. O. O., Brimacombe, M., Connor, S., & Daniels, M. L. (2005). Reduced cardiac parasympathetic activity in children with autism. Brain and Development, 27(7), 509-516. https://doi.org/10.1016/j.braindev.2005.01.003. ; Mottron, L., Belleville, S., & Ménard, E. (1999). Local bias in autistic subjects as evidenced by graphic tasks: Perceptual hierarchization or working memory deficit? Journal of Child Psychology and Psychiatry and Allied Disciplines, 40(5), 743-755. https://doi.org/10.1017/S0021963098003795. ; O’Riordan, M. A., Plaisted, K. C., Driver, J., & Baron-Cohen, S. (2001). Superior visual search in autism. Journal of Experimental Psychology: Human Perception and Performance, 27(3), 719-730. https://doi.org/10.1037/0096-1523.27.3.719. ; Paulus, M. P., & Stein, M. B. (2006). An insular view of anxiety. Biological Psychiatry, 60(4), 383-387. https://doi.org/10.1016/j.biopsych.2006.03.042. ; Pellicano, E., Gibson, L., Maybery, M., Durkin, K., & Badcock, D. R. (2005). Abnormal global processing along the dorsal visual pathway in autism: A possible mechanism for weak visuospatial coherence? Neuropsychologia, 43(7), 1044-1053. https://doi.org/10.1016/j.neuropsychologia.2004.10.003. ; Phelps, E. A., & LeDoux, J. E. (2005). Contributions of the amygdala to emotion processing: From animal models to human behavior. Neuron, 48(2), 175-187. https://doi.org/10.1016/j.neuron.2005.09.025. ; Phelps, E. A., Ling, S., & Carrasco, M. (2006). Emotion facilitates perception and potentiates the perceptual benefits of attention. Psychological Science, 17(4), 292-299. https://doi.org/10.1111/j.1467-9280.2006.01701.x. ; Preacher, K. J. (2002). Calculation for the test of the difference between two independent correlation coefficients. [Computer Software]. ; Rousselet, G. A., Husk, J. S., Bennett, P. J., & Sekuler, A. B. (2008). Time course and robustness of ERP object and face differences. Journal of Vision, 8(12), 3. https://doi.org/10.1167/8.12.3. ; Sanchez-Marin, F. J., & Padilla-Medina, J. A. (2008). A psychophysical test of the visual pathway of children with autism. Journal of Autism and Developmental Disorders, 38(7), 1270-1277. https://doi.org/10.1007/s10803-007-0507-9. ; Schaaf, R. C., Miller, L. J., Seawell, D., & O’Keefe, S. (2003). Children with disturbances in sensory processing: A pilot study examining the role of the parasympathetic nervous system. American Journal of Occupational Therapy, 57(4), 442-449. https://doi.org/10.5014/ajot.57.4.442. ; Schoen, S. A., Miller, L. J., Brett-Green, B. A., & Nielsen, D. M. (2009). Physiological and behavioral differences in sensory processing: A comparison of children with autism spectrum disorder and sensory modulation disorder. Frontiers in Integrative Neuroscience, 3(NOV). https://doi.org/10.3389/neuro.07.029.2009. ; Simonoff, E., Pickles, A., Charman, T., Chandler, S., Loucas, T., & Baird, G. (2008). Psychiatric disorders in children with autism spectrum disorders: Prevalence, comorbidity, and associated factors in a population-derived sample. Journal of the American Academy of Child and Adolescent Psychiatry, 47(8), 921-929. https://doi.org/10.1097/CHI.0b013e318179964f. ; Singer, T., Critchley, H. D., & Preuschoff, K. (2009). A common role of insula in feelings, empathy and uncertainty. Trends in Cognitive Sciences, 13(8), 334-340. https://doi.org/10.1016/j.tics.2009.05.001. ; Spain, D., Sin, J., Linder, K. B., McMahon, J., & Happé, F. (2018). Social anxiety in autism spectrum disorder: A systematic review. Research in Autism Spectrum Disorders, 52, 51-68. https://doi.org/10.1016/j.rasd.2018.04.007. ; Spence, C., Shore, D. I., & Klein, R. M. (2001). Multisensory prior entry. Journal of Experimental Psychology: General, 130(4), 799-832. https://doi.org/10.1037/0096-3445.130.4.799. ; Spencer, J., O’Brien, J., Riggs, K., Braddick, O., Atkinson, J., & Wattam-Bell, J. (2000). Motion processing in autism: Evidence for a dorsal stream deficiency. NeuroReport, 11(12), 2765-2767. https://doi.org/10.1097/00001756-200008210-00031. ; Spielberger, C. D., Gorsuch, R. L., Lushene, R., Vagg, P. R., & Jacobs, G. A. (1983). State-trait anxiety inventory for adults - Manual, instrument and scoring guide. Consulting Psychologists Press, Inc. Mind Garden, Inc. https://doi.org/10.1037/t06496-000. ; Stein, M. B., Simmons, A. N., Feinstein, J. S., & Paulus, M. P. (2007). Increased amygdala and insula activation during emotion processing in anxiety-prone subjects. American Journal of Psychiatry, 164(2), 318-327. https://doi.org/10.1176/ajp.2007.164.2.318. ; Tommerdahl, M., Tannan, V., Holden, J. K., & Baranek, G. T. (2008). Absence of stimulus-driven synchronization effects on sensory perception in autism: Evidence for local underconnectivity? Behavioral and Brain Functions, 4, 19. https://doi.org/10.1186/1744-9081-4-19. ; Tottenham, N., Hertzig, M. E., Gillespie-Lynch, K., Gilhooly, T., Millner, A. J., & Casey, B. J. (2014). Elevated amygdala response to faces and gaze aversion in autism spectrum disorder. Social Cognitive and Affective Neuroscience, 9(1), 106-117. https://doi.org/10.1093/scan/nst050. ; Tottenham, N., Tanaka, J. W., Leon, A. C., McCarry, T., Nurse, M., Hare, T. A., Marcus, D. J., Westerlund, A., Casey, B. J., & Nelson, C. (2009). The NimStim set of facial expressions: Judgments from untrained research participants. Psychiatry Research, 168(3), 242-249. https://doi.org/10.1016/j.psychres.2008.05.006. ; Turner, S. M., Beidel, D. C., & Epstein, L. H. (1991). Vulnerability and risk for anxiety disorders. Journal of Anxiety Disorders, 5(2), 151-166. https://doi.org/10.1016/0887-6185(91)90026-P. ; Van Hecke, A. V., Lebow, J., Bal, E., Lamb, D., Harden, E., Kramer, A., Denver, J., Bazhenova, O., & Porges, S. W. (2009). Electroencephalogram and heart rate regulation to familiar and unfamiliar people in children with autism spectrum disorders. Child Development, 80(4), 1118-1133. https://doi.org/10.1111/j.1467-8624.2009.01320.x. ; van Steensel, F. J. A., Bögels, S. M., & Perrin, S. (2011). Anxiety disorders in children and adolescents with autistic spectrum disorders: A meta-analysis. Clinical Child and Family Psychology Review, 14(3), 302-317. https://doi.org/10.1007/s10567-011-0097-0. ; Vandenbroucke, M. W. G., Scholte, H. S., Van Engeland, H., Lamme, V. A. F., & Kemner, C. (2008). A neural substrate for atypical low-level visual processing in autism spectrum disorder. Brain, 131(4), 1013-1024. https://doi.org/10.1093/brain/awm321. ; Vasa, R. A., & Mazurek, M. O. (2015). An update on anxiety in youth with autism spectrum disorders. Current Opinion in Psychiatry, 28(2), 83-90. https://doi.org/10.1097/YCO.0000000000000133. ; Wada, M., Suzuki, M., Takaki, A., Miyao, M., Spence, C., & Kansaku, K. (2014). Spatio-temporal processing of tactile stimuli in autistic children. Scientific Reports, 4, https://doi.org/10.1038/srep05985. ; Wakabayashi, A., Tojo, Y., Baron-Cohen, S., & Wheelwright, S. (2004). The Autism-Spectrum Quotient (AQ) Japanese version: Evidence from high-functioning clinical group and normal adults. Shinrigaku Kenkyu, 75(1), 78-84. https://doi.org/10.4992/jjpsy.75.78. ; Wiedemann, K. (2015). Anxiety and anxiety disorders. In International encyclopedia of the social & behavioral sciences (2nd ed., pp. 804-810). https://doi.org/10.1016/B978-0-08-097086-8.27006-2. ; Yamamoto, S., & Kitazawa, S. (2001). Reversal of subjective temporal order due to arm crossing. Nature Neuroscience, 4(7), 759-765. https://doi.org/10.1038/89559. ; Yamamoto, S., & Kitazawa, S. (2015). Tactile temporal order. Scholarpedia, 10(3), 8249. https://doi.org/10.4249/scholarpedia.8249. ; Yiend, J. (2010). The effects of emotion on attention: A review of attentional processing of emotional information. Cognition and Emotion, 24(1), 3-47. https://doi.org/10.1080/02699930903205698. ; Zhao, X., Zhang, P., Fu, L., & Maes, J. H. R. (2016). Attentional biases to faces expressing disgust in children with autism spectrum disorders: An exploratory study. Scientific Reports, 6, https://doi.org/10.1038/srep19381.
  • Contributed Indexing: Keywords: anxiety; emotion; temporal resolution; visual temporal order judgment
  • Entry Date(s): Date Created: 20210517 Date Completed: 20210813 Latest Revision: 20210813
  • Update Code: 20240513

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