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生物作用识别的发育不需要早期视觉输入。

Biological Action Identification Does Not Require Early Visual Input for Development.

机构信息

Biological Psychology and Neuropsychology, University of Hamburg, Hamburg, Germany

Jasti V Ramanamma Children's Eye Care Center, LV Prasad Eye Institute, Hyderabad, India.

出版信息

eNeuro. 2020 Oct 28;7(5). doi: 10.1523/ENEURO.0534-19.2020. Print 2020 Sep/Oct.

Abstract

Visual input during the first years of life is vital for the development of numerous visual functions. While normal development of global motion perception seems to require visual input during an early sensitive period, the detection of biological motion (BM) does not seem to do so. A more complex form of BM processing is the identification of human actions. Here, we tested whether identification rather than detection of BM is experience dependent. A group of human participants who had been treated for congenital cataracts (CC; of up to 18 years in duration, CC group) had to identify ten actions performed by human line figures. In addition, they performed a coherent motion (CM) detection task, which required identifying the direction of CM amid the movement of random dots. As controls, developmental cataract (DC) reversal individuals (DC group) who had undergone the same surgical treatment as CC group were included. Moreover, normally sighted controls were tested both with vision blurred to match the visual acuity (VA) of CC individuals [vision matched (VM) group] and with full sight [sighted control (SC) group]. The CC group identified biological actions with an extraordinary high accuracy (on average ∼85% correct) and was indistinguishable from the VM control group. By contrast, CM processing impairments of the CC group persisted even after controlling for VA. These results in the same individuals demonstrate an impressive resilience of BM processing to aberrant early visual experience and at the same time a sensitive period for the development of CM processing.

摘要

在生命的最初几年,视觉输入对许多视觉功能的发展至关重要。虽然全球运动感知的正常发展似乎需要在早期敏感时期的视觉输入,但生物运动(BM)的检测似乎并非如此。BM 处理的一种更复杂的形式是人类动作的识别。在这里,我们测试了识别 BM 而不是检测 BM 是否依赖于经验。一组接受过先天性白内障(CC;最长持续时间为 18 年)治疗的人类参与者必须识别由人类线图执行的十个动作。此外,他们还执行了连贯运动(CM)检测任务,该任务要求在随机点运动中识别 CM 的方向。作为对照,纳入了接受与 CC 组相同手术治疗的发育性白内障(DC)逆转个体(DC 组)。此外,正常视力的对照组也分别进行了视力模糊以匹配 CC 个体的视力(VA)[视力匹配(VM)组]和全视力[视力正常对照组(SC)组]的测试。CC 组识别生物动作的准确率极高(平均约为 85%),与 VM 对照组无法区分。相比之下,即使在控制 VA 后,CC 组的 CM 处理障碍仍然存在。这些在同一批个体中的结果表明,BM 处理对异常早期视觉经验具有令人印象深刻的恢复能力,同时对 CM 处理的发展具有敏感时期。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bd3/7598910/36ae149b3da1/SN-ENUJ200275F001.jpg

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