Brown Alyse C, Crewther David P
Centre for Human Psychopharmacology, Swinburne University of TechnologyMelbourne, VIC, Australia.
Front Hum Neurosci. 2017 May 11;11:239. doi: 10.3389/fnhum.2017.00239. eCollection 2017.
Despite much current research into the visual processing style of individuals with Autism Spectrum Disorder (ASD), understanding of the neural mechanisms is lagging, especially with respect to the contributions of the overlapping dichotomies of magnocellular/parvocellular (afferent neural pathways), global/local (perception) and dorsal/ventral (cortical streams). Here, we addressed this deficiency by measuring inspection times (ITs) for novel global/local stimuli as well as recording nonlinear visually evoked potentials (VEPs), in particular, magnocellular and parvocellular temporal efficiencies. The study was conducted on a group of male ASD children and a typically developing (TD) group matched for mean age and mean non-verbal intelligence, as measured by the Raven's Progressive Matrices. The IT results did not differ between groups, however a negative correlation between global IT and Raven's score was found in the ASD group, that was not evident in the TD group. Nonlinear VEP showed the ASD group had smaller amplitude parvocellular-generated second order responses compared to the TD group. This is a sign of improved temporal responsiveness in ASD vs. TD groups. Principal Component Analysis linked global IT, non-verbal intelligence scores and VEP parvocellular efficiency in a single factor for the ASD but not the TD group. The results are suggestive of a constraint on pathways available for cognitive response in the ASD group, with temporal processing for those with ASD becoming more reliant on the parvocellular pathway.
尽管目前对自闭症谱系障碍(ASD)个体的视觉处理方式进行了大量研究,但对其神经机制的理解仍较为滞后,尤其是在大细胞/小细胞(传入神经通路)、整体/局部(感知)和背侧/腹侧(皮质流)这几对重叠二分法的贡献方面。在此,我们通过测量对新颖的整体/局部刺激的注视时间(ITs)以及记录非线性视觉诱发电位(VEPs),特别是大细胞和小细胞的时间效率,来解决这一不足。该研究针对一组患有ASD的男性儿童以及一组在平均年龄和平均非言语智力方面相匹配的典型发育(TD)儿童进行,非言语智力通过瑞文渐进矩阵测验进行测量。两组之间的IT结果没有差异,然而,在ASD组中发现整体IT与瑞文分数之间存在负相关,而在TD组中并不明显。非线性VEP显示,与TD组相比,ASD组由小细胞产生的二阶反应的振幅较小。这表明ASD组与TD组相比,时间反应性有所改善。主成分分析将整体IT、非言语智力分数和VEP小细胞效率在ASD组而非TD组中联系在一个单一因素中。结果表明ASD组中可用于认知反应的通路存在限制,ASD患者的时间处理变得更加依赖小细胞通路。