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肌腱振动诱发的运动错觉:振动电机的方向作为一个新的方法学因素?

Kinesthetic illusions induced by muscle tendon vibration: The orientation of the vibration motor as a new methodological factor?

作者信息

Lauzier Lydiane, Abboud Jacques, Nougarou François, Beaulieu Louis-David

机构信息

Laboratoire BioNR, Centre Intersectoriel en Santé Durable, Université du Québec à Chicoutimi, Chicoutimi, Quebec, Canada.

Groupe de Recherche sur les Affections Neuromusculosquelettiques, Département des Sciences de L'Activité Physique, Université du Québec à Trois-Rivières, Trois-Rivières, Quebec, Canada.

出版信息

PLoS One. 2025 Jun 9;20(6):e0325737. doi: 10.1371/journal.pone.0325737. eCollection 2025.

Abstract

PURPOSE/AIM: To investigate the impact of changing the rotational orientation of the vibrating motor on kinesthestic illusions.

MATERIALS AND METHODS

Twenty healthy individuals received vibration over the wrist flexor muscles of dominant and non-dominant sides (80 Hz, 1 mm, 10 seconds) using four conditions (3 trials/conditions) defined by the rotational direction of the vibrator's eccentric rotating mass according to the anatomical position: (1) proximodistal, (2) distoproximal, (3) mediolateral and (4) lateromedial. Non-parametric statistical analyses were used to compare illusion characteristics across conditions.

RESULTS

Lateromedial rotation created illusions that were more often in unexpected directions compared to the other rotational orientations. Distoproximal rotation was more likely to evoke kinesthetic illusions of wrist extension (76.8%) compared to lateromedial rotation (57.7%; p = 0.009). The latter led more frequently to complex/combined movement illusions (26.1%) especially with an ulnar deviation component (17.7%) compared to the other rotational directions.

CONCLUSION

Results from the present study demonstrated that the rotational orientation can influence illusory perceptions, but not to a great extent. Distoproximal rotation was more effective to elicit the expected illusions of wrist extension, compared to the lateromedial orientation that more often caused complex and variable perceptions of movement. Distoproximal rotation should thus be preferred if clear and reproducible perceptions are required and lateromedial might serve as a way of creating illusions more akin to everyday functional movements. Although the exact underlying mechanisms remain unclear, our work raises awareness on the importance of gaining a better understanding and control over methodological factors that could affect kinesthetic illusions.

摘要

目的/目标:研究改变振动电机的旋转方向对运动错觉的影响。

材料与方法

20名健康个体在优势侧和非优势侧的腕屈肌上接受振动(80Hz,1毫米,10秒),采用根据解剖位置由振动器偏心旋转质量的旋转方向定义的四种条件(每种条件3次试验):(1)近端到远端,(2)远端到近端,(3)内侧到外侧,(4)外侧到内侧。使用非参数统计分析来比较不同条件下的错觉特征。

结果

与其他旋转方向相比,外侧到内侧旋转产生的错觉更常出现在意外方向。与外侧到内侧旋转(57.7%;p = 0.009)相比,远端到近端旋转更有可能诱发腕伸展的运动错觉(76.8%)。与其他旋转方向相比,后者更频繁地导致复杂/组合运动错觉(26.1%),尤其是伴有尺侧偏斜成分的错觉(17.7%)。

结论

本研究结果表明,旋转方向可影响错觉感知,但程度不大。与外侧到内侧方向相比,远端到近端旋转在引发预期的腕伸展错觉方面更有效,外侧到内侧方向更常导致复杂和多变的运动感知。因此,如果需要清晰且可重复的感知,应首选远端到近端旋转,而外侧到内侧旋转可能是产生更类似于日常功能运动错觉的一种方式。尽管确切的潜在机制仍不清楚,但我们的工作提高了人们对更好地理解和控制可能影响运动错觉的方法学因素重要性的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e71a/12148079/5bd4e860c4f5/pone.0325737.g001.jpg

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