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本体感觉是否有助于垂直感?

Does proprioception contribute to the sense of verticality?

作者信息

Barbieri Guillaume, Gissot Anne-Sophie, Fouque Florent, Casillas Jean-Marie, Pozzo Thierry, Pérennou Dominic

机构信息

INSERM, U887, Dijon 21078, France.

出版信息

Exp Brain Res. 2008 Mar;185(4):545-52. doi: 10.1007/s00221-007-1177-8. Epub 2007 Nov 1.

Abstract

The representation of the vertical can be assessed by measuring the visual, tactile or perception of the postural vertical (PV). It is well accepted that visceral graviceptors and Golgi tendon receptors contribute to perception of the PV, whereas the role of muscular proprioception (Ia muscle spindles) remains to be clarified. The objective of this study was to analyze whether or not muscular proprioception contributes to the representation of verticality. We hypothesized that the modulation of proprioception by appropriate tendinomuscular vibration may tilt the PV. We present two experiments that explore this hypothesis. PV was firstly measured in the pitch plane in twelve healthy subjects in two conditions: baseline and vibration of both Achilles tendons during six minutes, according to a counterbalanced presentation. PV orientation (mean) and dispersion (standard deviation) were calculated on the six measurements per condition. Vibration of the Achilles tendons induced a systematic backward tilt of PV (2.7 degrees +/- 0.8 degrees on average; P < 10(-3)), and no significant changes regarding PV dispersion. A clear post-effect was found for PV orientation in subjects who started the experiment with the condition vibration on. The possibility that PV could also be modulated by a much shorter duration of vibration (less than 8 s of vibration) was analyzed in a second experiment using a similar general procedure but a simplified experimental plane in other subjects. Again a backward PV tilt was induced by the vibration, but with a magnitude lower than that found in the first experiment, and with no post-effect. Since body geometry was unchanged, these two studies mean that proprioception contributes to the representation of the vertical. In conclusion, this study brings new insights to our understanding of the sense of verticality and contributes to the interpretation of backward falls induced by vibration. The induced backward fall is partly due to alignment of the erect posture with a backward-tilted referential of verticality.

摘要

可以通过测量视觉、触觉或姿势垂直(PV)感知来评估垂直方向的表征。内脏重力感受器和高尔基腱感受器对PV感知有贡献,这一点已得到广泛认可,而肌肉本体感觉(Ia型肌梭)的作用仍有待阐明。本研究的目的是分析肌肉本体感觉是否对垂直方向的表征有贡献。我们假设通过适当的肌腱肌肉振动调节本体感觉可能会使PV倾斜。我们提出了两个实验来探讨这一假设。首先,在俯仰平面上对12名健康受试者在两种条件下测量PV:基线条件和在六分钟内双侧跟腱振动,测量顺序采用平衡设计。计算每种条件下六次测量的PV方向(平均值)和离散度(标准差)。跟腱振动导致PV系统性向后倾斜(平均2.7度±0.8度;P<10-3),PV离散度无显著变化。对于在振动条件下开始实验的受试者,发现PV方向有明显的后效应。在第二个实验中,对其他受试者采用类似的一般程序,但使用简化的实验平面,分析了PV是否也能通过更短持续时间的振动(少于8秒振动)进行调节。同样,振动导致PV向后倾斜,但幅度低于第一个实验,且无后效应。由于身体几何形状未改变,这两项研究表明本体感觉对垂直方向的表征有贡献。总之,本研究为我们对垂直感的理解带来了新的见解,并有助于解释由振动引起的向后跌倒。诱发的向后跌倒部分是由于直立姿势与向后倾斜的垂直参考系对齐。

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