Brunetti Orazio, Della Torre Giovannella, Lucchi Maria Luisa, Chiocchetti Roberto, Bortolami Ruggero, Pettorossi Vito Enrico
Department of Internal Medicine, Section of Human Physiology, University of Perugia, Via del Giochetto, 06100 Perugia, Italy.
Exp Brain Res. 2003 Sep;152(2):251-62. doi: 10.1007/s00221-003-1544-z. Epub 2003 Jul 24.
The influence of muscle fatigue on the jaw-closing muscle spindle activity has been investigated by analyzing: (1) the field potentials evoked in the trigeminal motor nucleus (Vmot) by trigeminal mesencephalic nucleus (Vmes) stimulation, (2) the orthodromic and antidromic responses evoked in the Vmes by stimulation of the peripheral and central axons of the muscle proprioceptive afferents, and (3) the extracellular unitary discharge of masseter muscle spindles recorded in the Vmes. The masseter muscle was fatigued by prolonged tetanic masseter nerve electrical stimulation. Pre- and postsynaptic components of the potentials evoked in the Vmot showed a significant reduction in amplitude following muscle fatigue. Orthodromic and antidromic potentials recorded in the Vmes also showed a similar amplitude decrease. Furthermore, muscle fatigue caused a decrease of the discharge frequency of masseter muscle spindle afferents in most of the examined units. The inhibition of the potential amplitude and discharge frequency was strictly correlated with the extent of muscle fatigue and was mediated by the group III and IV afferent muscle fibers activated by fatigue. In fact, the inhibitory effect was abolished by capsaicin injection in the masseter muscle that provokes selective degeneration of small afferent muscle fibers containing neurokinins. We concluded that fatigue signals originating from the muscle and traveling through capsaicin-sensitive fibers are able to diminish the proprioceptive input by a central presynaptic influence. In the second part of the study, we examined the central projection of the masseter small afferents sensitive to capsaicin at the electron-microscopic level. Fiber degeneration was induced by injecting capsaicin into the masseter muscle. Degenerating terminals were found on the soma and stem process in Vmes and on the dendritic tree of neurons in Vmot. This suggests that small muscle afferents may influence the muscle spindle activity through direct synapses on somata in Vmes and on dendrites of neurons in Vmot.
通过分析以下方面,研究了肌肉疲劳对闭口肌肌梭活动的影响:(1) 三叉神经中脑核 (Vmes) 刺激诱发的三叉神经运动核 (Vmot) 中的场电位;(2) 肌肉本体感受传入纤维的外周和中枢轴突刺激在 Vmes 中诱发的顺行和逆行反应;(3) 在 Vmes 中记录的咬肌肌梭的细胞外单位放电。通过长时间的咬肌神经强直电刺激使咬肌疲劳。肌肉疲劳后,Vmot 中诱发的电位的突触前和突触后成分的幅度显著降低。在 Vmes 中记录的顺行和逆行电位也显示出类似的幅度下降。此外,在大多数被检查的单位中,肌肉疲劳导致咬肌肌梭传入纤维的放电频率降低。电位幅度和放电频率的抑制与肌肉疲劳程度密切相关,并由疲劳激活的Ⅲ类和Ⅳ类传入肌纤维介导。事实上,通过向咬肌注射辣椒素使含有神经激肽的小传入肌纤维选择性变性,可消除抑制作用。我们得出结论,源自肌肉并通过辣椒素敏感纤维传导的疲劳信号能够通过中枢突触前影响减少本体感受输入。在研究的第二部分,我们在电子显微镜水平检查了对辣椒素敏感的咬肌小传入纤维的中枢投射。通过向咬肌注射辣椒素诱导纤维变性。在 Vmes 的胞体和轴突以及 Vmot 神经元的树突上发现了变性终末。这表明小肌肉传入纤维可能通过直接突触作用于 Vmes 中的胞体和 Vmot 神经元的树突来影响肌梭活动。