人类逐渐将视觉信息的突然增加或损失与空间定向感知相结合
Jamie Voros1, Victoria Kravets1, Kieran Smith1
1Ann and H.J. Smead Department of Aerospace Engineering Sciences, Boulder, CO, United States.
Frontiers in neuroscience
|January 23, 2024
概括
人类在10秒内逐渐整合新的视觉信息,当它在自动运动中变得可用时. 当视觉信息丢失时,先前的视觉数据会影响30秒的感知,影响空间定向.
科学领域:
- 神经科学是一个神经科学.
- 人类的感知 人类的感知
- 计算建模 计算建模
背景情况:
- 空间定向依赖于整合前体和视觉信息.
- 当前的模型解释了方向感知与一致的视觉/前置输入,但不是突然的变化.
- 之前的研究缺乏关于人类在视觉信息突然转换期间的运动感知数据.
研究的目的:
- 在视觉信息的可用性突然变化时,研究人类的运动感知.
- 量化自动运动过程中整合或忽略视觉线索的时间进程.
- 开发一个解释这些感知动态的计算模型.
主要方法:
- 一个心理物理任务被用来收集自我旋转的感知报告.
- 实验包括地球垂直曲线旋转与视觉信息突然出现或偏移.
- 控制条件的特点是持续的视觉可用性或缺失.
主要成果:
- 视觉信息的突然可用性导致了大约10秒的逐步整合.
- 视觉信息的突然删除导致过去视觉数据持续影响大约30秒.
- 开发了一个新的计算模型,与观察到的实验结果保持一致.
结论:
- 人类的空间定向感知涉及一个渐进的整合过程,突然的视觉输入变化.
- 视觉角速度感官冲突通路中的低通,解释了这种渐进的整合.
- 这项研究表明,大脑如何适应视觉和前庭感官信息的动态变化,以感知自我运动.
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