在人体初级视觉皮层中通过在视网膜输入处理过程中重新进入的投影来调节神经元反应,这体现在视觉唤起的潜力中
Valentine L Marcar1,2, Martin Wolf1
1University Hospital Zürich, Biomedical Optics Research Laboratory (BORL), Frauenklinikstrasse 10, CH-8091, Zürich, Switzerland.
Heliyon
|May 21, 2024
概括
视觉唤起潜能 (VEP) 揭示了处理时间和空间视觉信息的独特神经通路. 早期的VEP组件处理基本特征,而后来的组件则将它们集成到对象中,受反投影的影响.
科学领域:
- 神经科学是一个神经科学.
- 视觉感知 视觉感知 视觉感知
- 电力生理学 电力生理学
背景情况:
- 视觉唤起潜能 (VEP) 对于理解视觉处理至关重要.
- 最初的VEP偏移与特征提取有关,不受反影响.
- 后来的VEP偏移涉及对象形成,由反投影调节.
研究的目的:
- 在VEP中区分神经处理时间和空间亮度对比.
- 调查回入投影在视觉对象感知中的作用.
- 为了确定与不同VEP组件相关的轴突导电速度.
主要方法:
- 在12名志愿者中记录了VEP,他们观看了旋转的图像对 (风车,普通达特板,RMS达特板).
- 操纵时间度对比度,同时保持空间度对比度恒定.
- 分析了VEP振幅 (N75,P100,N135,P240),延迟时间,源定位和时间频率.
主要成果:
- P100的振幅与通过快速导电的回流投影进行时间发光强度对比处理相关.
- N135和P240的振幅与通过慢导回流投影的空间亮度对比处理相关.
- 快速传导速度是背部流的特征,而缓慢的速度是腹部流的特征.
结论:
- VEP组件不同地反映时间和空间亮度对比处理.
- 在早期和晚期的视觉处理阶段,回流投影起着不同的作用.
- 背部和腹部流的轴突导电速度差异反映在VEP调制中.
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