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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Experimental brain research 31 (1978), S. 433-443 
    ISSN: 1432-1106
    Keywords: Rat ; Soleus ; Fusimotor innervation ; Skeletofusimotor innervation
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary In the small segmental tail muscles of the rat beta fibres provide exclusively the dynamic fusimotor control, while gamma fibres provide exclusively the static fusimor control. The present experiments were made to investigate the fusimotor innervation of spindles in a large muscle of the rat, the soleus, and thus to determine the occurrence and significance of beta innervation in this muscle. Our results have revealed no case of beta innervation in the rat soleus. As a consequence of our experimental method, however, we would not claim that beta innervation does not exist in the soleus, only that it must play an insignificant role relative to that seen in the tail segmental muscles. Investigations of the fusimotor innervation of eight spindles were sufficiently complete to warrant detailed illustration. The number of gamma fibres ranged from two to four. In every case the slowest conducting gamma fibre was dynamic. However, the conduction velocity spectra for the static and dynamic gamma fibres to rat soleus overlap to such an extent that it is impossible to use conduction velocity as the sole guide to functional gamma fibre classification. The pooled results from the eight spindles fully investigated provide a ratio of static to dynamic gamma fibres of approximately 1:1. Other evidence discussed in the paper suggests that in the muscle nerve the ratio is considerably higher. These differences are reconciled if the dynamic gamma fibres branch more profusely and innervate more spindles than do the static gamma fibres.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-1106
    Keywords: Rat ; Fusimotor efferents ; Pinna stimulation
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Pinna stimulation has long been known to evoke reflex changes of discharge in γ efferents to the hind limb and hence changes in muscle spindle discharges. The present experiments were made in the rat to determine the involvement of the static and dynamic fusimotor systems in the pinna reflex. We first observed fusimotor activity indirectly, by recording spindle responses to various length changes with and without concurrent pinna stimulation. Afferent responses were clearly influenced by static fusimotion during the reflex; evidence for dynamic fusimotion was sought but not found. Ipsilateral and contralateral stimuli appeared equally effective in evoking this static fusimotion. The magnitudes of afferent responses differed markedly between muscles. Observations were made simultaneously on activities recorded directly from γ efferents to peroneal and soleus muscles. Several γ efferents were spontaneously active in each nerve; pinna stimulation usually enhanced their activities and aroused also several others, previously quiescent. The frequencies of discharge in γ efferents to peroneus were usually higher than in those to soleus. This must in part be responsible for differences in afferent responses. The spontaneously active and activated fibres together formed about one quarter to one third of the total γ motoneurone pool and had conduction velocities restricted to the lower end of the conduction velocity spectrum for γ fibres.
    Type of Medium: Electronic Resource
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