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视流能否进一步刺激新生儿在跑步机上引发的踏步动作?

Can Optic Flow Further Stimulate Treadmill-Elicited Stepping in Newborns?

作者信息

Barbu-Roth Marianne, Siekerman Kim, Anderson David I, Donnelly Alan, Huet Viviane, Goffinet François, Teulier Caroline

机构信息

Integrative Neuroscience and Cognition Center, Université de Paris - CNRS, Paris, France.

Department of Physical Education and Sport Sciences, University of Limerick, Limerick, Ireland.

出版信息

Front Psychol. 2021 May 13;12:665306. doi: 10.3389/fpsyg.2021.665306. eCollection 2021.

Abstract

Typically developing 3-day-old newborns take significantly more forward steps on a moving treadmill belt than on a static belt. The current experiment examined whether projecting optic flows that specified forward motion onto the moving treadmill surface (black dots moving on the white treadmill surface) would further enhance forward stepping. Twenty newborns were supported on a moving treadmill without optic flow (No OF), with optic flow matching the treadmill's direction and speed (Congruent), with optic flow in the same direction but at a faster speed (Faster), and in a control condition with an incoherent optic flow moving at the same speed as in the Congruent condition but in random directions (Random). The results revealed no significant differences in the number or coordination of forward treadmill steps taken in each condition. However, the Faster condition generated significantly fewer leg pumping movements than the Random control condition. When highly aroused, newborns made significantly fewer single steps and significantly more parallel steps and pumping movements. We speculate the null findings may be a function of the high friction material that covered the treadmill surface.

摘要

通常发育的3天大的新生儿在移动的跑步机皮带上比在静止的皮带上向前迈出的步伐明显更多。当前的实验研究了将指定向前运动的视觉流投射到移动的跑步机表面(白色跑步机表面上的黑点移动)是否会进一步增强向前迈步。20名新生儿被支撑在没有视觉流的移动跑步机上(无视觉流组)、视觉流与跑步机的方向和速度匹配的情况下(一致组)、视觉流方向相同但速度更快的情况下(更快组),以及在一个对照条件下,即具有与一致组相同速度但方向随机的不连贯视觉流(随机组)。结果显示,在每种条件下,向前跑步机步伐的数量或协调性没有显著差异。然而,更快组产生的腿部抽动动作明显少于随机对照组。当高度兴奋时,新生儿的单步明显减少,平行步和抽动动作明显增多。我们推测这些无效结果可能是由于覆盖跑步机表面的高摩擦材料所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff39/8155502/08f31d2c45f0/fpsyg-12-665306-g003.jpg

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