AbstractThe paper describes the results of studies aimed at evaluating the effect of interactive virtual environments on the visual system, '/> Analysis of Visual Cognitive Impairments in Schizophrenia at the Early Stages of the Disease and Their Correction by Interactive Virtual Environment
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Analysis of Visual Cognitive Impairments in Schizophrenia at the Early Stages of the Disease and Their Correction by Interactive Virtual Environment

机译:疾病早期阶段精神分裂症的视觉认知障碍分析及交互式虚拟环境矫正

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AbstractThe paper describes the results of studies aimed at evaluating the effect of interactive virtual environments on the visual system, including the magno-and parvo-systems. Analysis was conducted in patients diagnosed with paranoid schizophrenia diagnosed from one to five years ago. Comparative analysis of visual evoked potentials during the perception of images that differed in their semantic (animate/inanimate) and physical characteristics (filtration images at high/low spatial frequencies) was used for the assessment of the impact of virtual environments. The images of objects were filtered via digital filtration for selective effect on the magno-and parvo-channels of the visual system. To evaluate the function of visual perception, the measurement of contrast sensitivity using Gabor elements was used. At the early stages of schizophrenia, the patients exhibited a decrease in the amplitudes of the components of cognitive visual evoked potentials to stimuli filtered at high spatial frequencies and reduced contrast sensitivity at high spatial frequencies. The effect of virtual environments on the visual system resulted in a significant increase in the amplitude of the cognitive components of visual evoked potentials in the paradigm of presentation of images filtered at the high spatial frequencies, which allows the conclusion about a stimulating effect of the virtual environment on the parvo-system functioning. The activation of the magno-system occurred to a lesser extent. The present study represents the findings obtained by the studies of cognitive impairments in schizophrenia and the methods of their correction conducted at the Laboratory of Physiology of Vision of the Pavlov Institute of Physiology of the Russian Academy of Sciences and at the Laboratory of Neurobiology of Action Programming of the Bechtereva Institute of the Human Brain of the Russian Academy of Sciences.
机译: Abstract 本文介绍了旨在评估交互式虚拟环境对视觉系统(包括magno-and)的影响的研究结果细小系统。分析被诊断为一到五年前诊断为偏执型精神分裂症的患者。在感知语义(动画/无生命)和物理特性(高/低空间频率的过滤图像)不同的图像时,视觉诱发电位的比较分析用于评估虚拟环境的影响。通过数字滤波对物体的图像进行滤波,以选择性地影响视觉系统的大通道和小通道。为了评估视觉感知的功能,使用了使用Gabor元素的对比敏感度测量。在精神分裂症的早期阶段,患者表现出认知视觉诱发电位成分的振幅降低,所述认知视觉诱发电位对在高空间频率下过滤的刺激产生刺激,并在高空间频率下降低造影剂敏感性。虚拟环境对视觉系统的影响导致在以高空间频率过滤的图像的显示范例中,视觉诱发电位的认知成分的幅度显着增加,从而得出关于虚拟刺激效果的结论。细小系统运行的环境。 magno-system的激活程度较小。本研究代表了通过对精神分裂症认知障碍的研究以及在俄罗斯科学院巴甫洛夫生理研究所视觉生理学实验室和行动编程神经生物学实验室进行的矫正方法研究获得的发现。俄罗斯科学院Bechtereva人脑研究所的成员。

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