Awiszus F, Schäfer S S
Abteilung Neurophysiologie, Medizinische Hochschule Hannover, F.R.G.
Brain Res. 1989 Jun 5;489(1):41-8. doi: 10.1016/0006-8993(89)90006-1.
The ability of maintained dynamic and static fusimotor stimulation to modulate the primary afferent response of the muscle spindle in the rhythm of gamma-stimulation was investigated using a highly sensitive method for modulation detection. The effect of 41 gamma-fibers (13 dynamic; 28 static) on 38 primary afferents obtained from the tibialis anterior muscle of the cat was studied. It was found that maintained stimulation of 10 out of the 13 dynamic (77%) and of 25 out of the 28 static (89%) gamma-fibers could evoke significant modulations of the primary afferent response in the rhythm of fusimotor stimulation at a minimum of one stimulation rate. Moreover, both static and dynamic gamma-stimulations could evoke significant primary afferent modulations almost over the entire range of stimulation rates studied (30-300 stimuli per second). These results show that both gamma-systems can modulate the primary afferent response in the rhythm of fusimotor stimulation over a wide range of stimulation rates; thus the central nervous system may be provided with re-afferent information about the effect of each individual gamma-motoneuron discharge. Some hypotheses for the internal spindle mechanism responsible for the afferent modulations are discussed.
使用一种高度灵敏的调制检测方法,研究了持续的动态和静态肌梭运动神经刺激在γ刺激节律下调节肌梭初级传入反应的能力。研究了41条γ纤维(13条动态;28条静态)对从猫的胫骨前肌获得的38条初级传入纤维的影响。结果发现,13条动态γ纤维中的10条(77%)以及28条静态γ纤维中的25条(89%)在至少一种刺激频率下持续刺激时,能够在肌梭运动神经刺激节律下引起初级传入反应的显著调制。此外,静态和动态γ刺激几乎在所研究的整个刺激频率范围内(每秒30 - 300次刺激)都能引起显著的初级传入调制。这些结果表明,两个γ系统都可以在很宽的刺激频率范围内,以肌梭运动神经刺激的节律调节初级传入反应;因此,中枢神经系统可能会获得关于每个单独γ运动神经元放电效果的再传入信息。文中还讨论了一些关于负责传入调制的肌梭内部机制的假设。