Department of Psychology, University of Québec in Montréal, Montreal, QC, Canada.
CIUSSS NIM Research Center, Hôpital en Santé Mentale Rivière-des-Prairies, Montreal, QC, Canada.
J Autism Dev Disord. 2023 Dec;53(12):4719-4730. doi: 10.1007/s10803-022-05746-1. Epub 2022 Sep 22.
In light of the known visuoperceptual strengths and altered language skills in autism, we investigated the impact of problem content (semantic/visuospatial) combined with complexity and presence of lures on fluid reasoning in 43 autistic and 41 typical children (6-13 years old). Increased complexity and presence of lures diminished performance, but less so as the children's age increased. Typical children were slightly more accurate overall, whereas autistic children were faster at solving complex visuospatial problems. Thus, reasoning could rely more extensively on visuospatial strategies in autistic versus typical children. A combined speed-accuracy measure revealed similar performance in both groups, suggesting a similar pace in fluid reasoning development. Visual presentation of conceptual information seems to suit the reasoning processes of autistic children.
鉴于自闭症患者已知的视觉感知优势和语言技能改变,我们研究了问题内容(语义/视觉空间)、复杂性和诱饵的存在对 43 名自闭症儿童和 41 名正常儿童(6-13 岁)流体推理的影响。随着儿童年龄的增长,增加复杂性和存在诱饵会降低表现,但效果较小。正常儿童的整体表现略为准确,而自闭症儿童在解决复杂的视觉空间问题时速度更快。因此,推理可能更多地依赖于自闭症儿童而非典型儿童的视觉空间策略。综合速度准确性测量显示两组表现相似,表明流体推理发展的速度相似。概念信息的视觉呈现似乎适合自闭症儿童的推理过程。