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首页> 外文期刊>Experimental Brain Research >For humans navigating without vision, navigation depends upon the layout of mechanically contacted ground surfaces
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For humans navigating without vision, navigation depends upon the layout of mechanically contacted ground surfaces

机译:对于没有愿景的人类导航,导航取决于机械接触地面的布局

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摘要

Navigation can be haptically guided. In specific, tissue deformations arising from both limb motions during locomotion (i.e., gait patterns) and mechanical interactions between the limbs and the environment can convey information, detected by the haptic perceptual system, about how the body is moving relative to the environment. Here, we test hypotheses concerning the properties of mechanically contacted environments relevant to navigation of this kind. We studied blindfolded participants implicitly learning to perceive their location within environments that were physically encountered via walking on, stepping on, and probing ground surfaces with a cane. Environments were straight-line paths with elevated sections where the path either narrowed or remained the same width. We formed hypotheses concerning how these two environments would affect spatial updating and reorientation processes. In the constant pathwidth environment, homing task accuracy was higher and a manipulation of the elevated surface, to be either unchanged or (unbeknown to participants) shortened, biased the performance. This was consistent with our hypothesis of a metric recalibration scaled to elevated surface extent. In the narrowing pathwidth environment, elevated surface shortening did not bias performance. This supported our hypothesis of positional recalibration resulting from contact with the leading edge of the elevated surface. We discuss why certain environmental properties, such as path-narrowing, have significance for how one becomes implicitly oriented the surrounding environment.
机译:导航可以触觉引导。在特定的情况下,在运动期间(即步态图案)的肢体运动产生的组织变形和肢体与环境之间的机械相互作用可以传达由触觉感知系统检测的信息,了解身体如何相对于环境移动。在这里,我们测试关于与这种导航相关的机械联系环境的性质的假设。我们研究了蒙上眼睛的参与者隐含地学习,以便在通过步行,踩踏和探测拐杖探测地面遇到的环境中的环境中的位置。环境是具有升高部分的直线路径,其中路径缩小或保持相同的宽度。我们形成了关于这两个环境如何影响空间更新和重新定向过程的假设。在恒定的路径环境中,归位任务准确性更高,升高的表面的操纵,要么不变或(对参与者的不知数)缩短,偏见了性能。这与我们的假设的假设缩小为升高的表面范围。在缩小路径环境中,表面缩短升高不偏见性能。这支持我们与升高表面的前缘接触产生的位置重新校准的假设。我们讨论为什么某些环境属性,例如路径缩小,对如何隐含地导向周围环境具有重要意义。

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