School of Psychological and Cognitive Sciences, Peking University, Beijing 100871, China.
Beijing Key Laboratory of Behavior and Mental Health, Peking University, Beijing 100871, China.
J Neurosci. 2024 Jul 3;44(27):e1175232024. doi: 10.1523/JNEUROSCI.1175-23.2024.
Scene memory is prone to systematic distortions potentially arising from experience with the external world. Boundary transformation, a well-known memory distortion effect along the near-far axis of the three-dimensional space, represents the observer's erroneous recall of scenes' viewing distance. Researchers argued that normalization to the prototypical viewpoint with the high-probability viewing distance influenced this phenomenon. Herein, we hypothesized that the prototypical viewpoint also exists in the vertical angle of view (AOV) dimension and could cause memory distortion along scenes' vertical axis. Human subjects of both sexes were recruited to test this hypothesis, and two behavioral experiments were conducted, revealing a systematic memory distortion in the vertical AOV in both the forced choice ( = 79) and free adjustment ( = 30) tasks. Furthermore, the regression analysis implied that the complexity information asymmetry in scenes' vertical axis and the independent subjective AOV ratings from a large set of online participants ( = 1,208) could jointly predict AOV biases. Furthermore, in a functional magnetic resonance imaging experiment ( = 24), we demonstrated the involvement of areas in the ventral visual pathway (V3/V4, PPA, and OPA) in AOV bias judgment. Additionally, in a magnetoencephalography experiment ( = 20), we could significantly decode the subjects' AOV bias judgments ∼140 ms after scene onset and the low-level visual complexity information around the similar temporal interval. These findings suggest that AOV bias is driven by the normalization process and associated with the neural activities in the early stage of scene processing.
场景记忆容易受到可能源于与外部世界经验的系统扭曲。边界转换是三维空间近-远轴上一种众所周知的记忆扭曲效应,代表观察者对场景观看距离的错误回忆。研究人员认为,对原型视角与高概率观看距离的归一化会影响这种现象。在此,我们假设原型视角也存在于垂直视角(AOV)维度中,并可能导致场景垂直轴上的记忆扭曲。我们招募了男女受试者来检验这一假设,并进行了两项行为实验,结果显示在强制选择(=79)和自由调整(=30)任务中,场景的垂直 AOV 存在系统性的记忆扭曲。此外,回归分析表明,场景垂直轴上的复杂性信息不对称和来自大量在线参与者(=1208)的独立主观 AOV 评分可以共同预测 AOV 偏差。此外,在一项功能磁共振成像实验(=24)中,我们证明了腹侧视觉通路(V3/V4、PPA 和 OPA)区域参与了 AOV 偏差判断。此外,在一项脑磁图实验(=20)中,我们可以在场景呈现后约 140 毫秒以及在类似的时间间隔内显著解码出被试的 AOV 偏差判断。这些发现表明,AOV 偏差是由归一化过程驱动的,与场景处理早期的神经活动有关。