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给 ASD 中的自发性和自我发现一个机会:自发的外周肢体变化作为唤起中枢驱动的意向行为的替代指标。

Give spontaneity and self-discovery a chance in ASD: spontaneous peripheral limb variability as a proxy to evoke centrally driven intentional acts.

机构信息

Rutgers University Psychology Department, Computational Biomedicine Imaging and Medicine Center, Rutgers University Center for Cognitive Science New Brunswick, NJ, USA.

出版信息

Front Integr Neurosci. 2013 Jul 24;7:46. doi: 10.3389/fnint.2013.00046. eCollection 2013.

Abstract

Autism can be conceived as an adaptive biological response to an early unexpected developmental change. Under such conceptualization one could think of emerging biological compensatory mechanisms with unique manifestations in each individual. Within a large group of affected people this would result in a highly heterogeneous spectral disorder where it would be difficult to tap into the hidden potentials of any given individual. A pressing question is how to treat the disorder while harnessing the capabilities and predispositions that the individual has already developed. It would indeed be ideal to use such strengths to accelerate the learning of self-sufficiency and independence, important as the person transitions into adulthood. In this report, we introduce a new concept for therapeutic interventions and basic research in autism. We use visuo-spatial and auditory stimuli to help augment the physical reality of the child and sensory-substitute corrupted kinesthetic information quantified in his/her movement patterns to help the person develop volitional control over the hand motions. We develop a co-adaptive child-computer interface that closes the sensory-motor feedback loops by alerting the child of a cause-effect relationship between the statistics of his/her real-time hand movement patterns and those of external media states. By co-adapting the statistics of the media states and those of the child's real-time hand movements, we found that without any food/token reward the children naturally remained engaged in the task. Even in the absence of practice, the learning gains were retained, transferred and improved 2-4 weeks later. This new concept demonstrates that individuals with autism do have spontaneous sensory-motor adaptive capabilities. When led to their self-discovery, these patterns of spontaneous behavioral variability (SBV) morph into more predictive and reliable intentional actions. These can unlock and enhance exploratory behavior and autonomy in the individual with autism spectrum disorders (ASD).

摘要

自闭症可以被视为对早期意外发育变化的一种适应性生物反应。在这种概念下,人们可以想到新出现的生物补偿机制,每个个体都有独特的表现。在一大群受影响的人群中,这将导致高度异质的光谱障碍,难以挖掘任何特定个体的潜在能力。一个紧迫的问题是,在利用个体已经发展出来的能力和倾向的同时,如何治疗这种障碍。利用这些优势来加速自我维持和独立的学习,对于个体过渡到成年期确实是理想的。在本报告中,我们引入了自闭症治疗干预和基础研究的新概念。我们使用视觉和听觉刺激来帮助增强儿童的物理现实,并量化他们运动模式中的感官替代受损运动信息,以帮助个体发展对手部运动的意志控制。我们开发了一种协同自适应的儿童-计算机接口,通过提醒儿童其实时手部运动模式的统计数据与外部媒体状态之间的因果关系,来闭合感觉运动反馈循环。通过协同自适应媒体状态的统计数据和儿童实时手部运动的统计数据,我们发现,即使没有食物/代币奖励,儿童也会自然地参与到任务中。即使没有练习,学习收益也会保留、转移并在 2-4 周后得到提高。这个新概念表明,自闭症患者确实具有自发的感觉运动适应能力。当引导他们自我发现时,这些自发行为变异性(SBV)模式会转变为更具预测性和可靠性的有意动作。这些可以在自闭症谱系障碍(ASD)患者中解锁和增强探索性行为和自主性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b4b/3721359/2047b7ca368a/fnint-07-00046-g0001.jpg

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