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首页> 外文期刊>Memory & cognition >Structural properties of spatial representations in blind people: Scanning images constructed from haptic exploration or from locomotion in a 3-D audio virtual environment
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Structural properties of spatial representations in blind people: Scanning images constructed from haptic exploration or from locomotion in a 3-D audio virtual environment

机译:盲人空间表示的结构特性:在3D音频虚拟环境中扫描通过触觉探索或移动构建的图像

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摘要

When people scan mental images, their response times increase linearly with increases in the distance to be scanned, which is generally taken as reflecting the fact that their internal representations incorporate the metric properties of the corresponding objects. In view of this finding, we investigated the structural properties of spatial mental images created from nonvisual sources in three groups (blindfolded sighted, late blind, and congenitally blind). In Experiment 1, blindfolded sighted and late blind participants created metrically accurate spatial representations of a small-scale spatial configuration under both verbal and haptic learning conditions. In Experiment 2, late and congenitally blind participants generated accurate spatial mental images after both verbal and locomotor learning of a full-scale navigable space (created by an immersive audio virtual reality system), whereas blindfolded sighted participants were selectively impaired in their ability to generate precise spatial representations from locomotor experience. These results attest that in the context of a permanent lack of sight, encoding spatial information on the basis of the most reliable currently functional system (the sensorimotor system) is crucial for building a metrically accurate representation of a spatial environment. The results also highlight the potential of spatialized audio-rendering technology for exploring the spatial representations of visually impaired participants.
机译:当人们扫描心理图像时,其响应时间随要扫描的距离的增加而线性增加,这通常被认为反映了其内部表示包含了相应对象的度量属性的事实。鉴于这一发现,我们调查了由非视觉来源在三组(蒙眼的,晚盲的和先天性盲的)中创建的空间心理图像的结构特性。在实验1中,蒙着眼睛的盲人和晚期盲人在言语和触觉学习条件下创建了小规模空间配置的度量精确空间表示。在实验2中,晚期和先天性盲人参与者在口头和运动学习了完整的可导航空间(由沉浸式音频虚拟现实系统创建)后生成了准确的空间心理图像,而蒙住眼睛的目击者被选择性地削弱了他们的生成能力运动经验的精确空间表示。这些结果证明,在永久性视力不佳的情况下,基于当前最可靠的功能系统(感觉运动系统)对空间信息进行编码对于构建空间环境的度量精确表示至关重要。研究结果还凸显了空间音频渲染技术在探索视障参与者空间表示方面的潜力。

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