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肌梭振动引起的错觉表明肌梭传入在调节咬肌等长收缩中的作用。

Illusion caused by vibration of muscle spindles reveals an involvement of muscle spindle inputs in regulating isometric contraction of masseter muscles.

机构信息

Department of Neuroscience and Oral Physiology, Osaka University Graduate School of Dentistry, Suita, Osaka, Japan.

出版信息

J Neurophysiol. 2012 Nov;108(9):2524-33. doi: 10.1152/jn.00997.2011. Epub 2012 Aug 22.

DOI:10.1152/jn.00997.2011
PMID:22914653
Abstract

Spindle Ia afferents may be differentially involved in voluntary isometric contraction, depending on the pattern of synaptic connections in spindle reflex pathways. We investigated how isometric contraction of masseter muscles is regulated through the activity of their muscle spindles that contain the largest number of intrafusal fibers among skeletal muscle spindles by examining the effects of vibration of muscle spindles on the voluntary isometric contraction. Subjects were instructed to hold the jaw at resting position by counteracting ramp loads applied on lower molar teeth. In response to the increasing-ramp load, the root mean square (RMS) of masseter EMG activity almost linearly increased under no vibration, while displaying a steep linear increase followed by a slower increase under vibration. The regression line of the relationship between the load and RMS was significantly steeper under vibration than under no vibration, suggesting that the subjects overestimated the ramp load and excessively counteracted it as reflected in the emergence of bite pressure. In response to the decreasing-ramp load applied following the increasing one, the RMS hardly decreased under vibration unlike under no vibration, leading to a generation of bite pressure even after the offset of the negative-ramp load until the vibration was ceased. Thus the subjects overestimated the increasing rate of the load while underestimating the decreasing rate of the load, due to the vibration-induced illusion of jaw opening. These observations suggest that spindle Ia/II inputs play crucial roles both in estimating the load and in controlling the isometric contraction of masseter muscles in the jaw-closed position.

摘要

梭内 Ia 传入纤维可能根据肌梭反射通路中的突触连接模式,对自愿等长收缩产生不同的影响。我们通过检查肌梭振动对自愿等长收缩的影响,研究了咀嚼肌的等长收缩是如何通过其含有最大数量的梭内纤维的肌梭来调节的。实验对象通过对抗施加在下颌磨牙上的斜坡载荷来保持下颌处于休息位置。在没有振动的情况下,随着斜坡载荷的增加,咬肌肌电图活动的均方根 (RMS) 几乎呈线性增加,而在振动下则呈先陡峭线性增加后缓慢增加的趋势。在振动下,载荷与 RMS 之间关系的回归线斜率明显大于无振动时,这表明实验对象高估了斜坡载荷,并过度地对抗它,这反映在咬合力的增加上。在施加增加的斜坡载荷后,随着斜坡载荷的减少,振动下的 RMS 几乎没有下降,与无振动时不同,这导致在负斜坡载荷消除后,即使在振动停止之前,仍会产生咬合力。因此,由于振动引起的张口错觉,实验对象高估了载荷的增加率,同时低估了载荷的减少率。这些观察结果表明,梭内 Ia/II 传入纤维在估计载荷和控制闭口状态下咀嚼肌的等长收缩方面都起着至关重要的作用。

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