Jankowska E, Slawinska U, Hammar I
Department of Physiology, Göteborg University, 405 30 Göteborg, Sweden.
J Physiol. 2002 Jul 1;542(Pt 1):287-99. doi: 10.1113/jphysiol.2001.014068.
The aim of this study was to investigate differences in the effects of presynaptic inhibition of transmission from group II muscle afferents to neurones in the dorsal horn and in the intermediate zone and the consequences of these differences for reflex actions of group II afferents upon alpha-motoneurones. The degree of presynaptic inhibition was estimated from the degree of depression of monosynaptic components of population EPSPs (field potentials) evoked by group II muscle afferents in deeply anaesthetized cats. The decrease in the area of field potentials was considerably larger and longer lasting in the intermediate zone, where they were often obliterated, than in the dorsal horn, where they were reduced to about two-thirds. Presynaptic inhibition of field potentials evoked by other afferents at the same locations was much weaker. Intracellular records from alpha-motoneurones revealed that short latency EPSPs and IPSPs evoked from group II afferents are considerably reduced by conditioning stimuli that effectively depress intermediate zone field potentials of group II origin. The results of this study lead to the conclusion that strong presynaptic inhibition of transmission to intermediate zone interneurones allows a selective depression of disynaptic actions of group II muscle afferents on alpha- and gamma-motoneurones, mediated by these interneurones, and favours polysynaptic actions of these afferents.
本研究的目的是调查从Ⅱ类肌传入纤维到脊髓背角和中间带神经元的突触前抑制作用的差异,以及这些差异对Ⅱ类传入纤维对α运动神经元的反射作用的影响。在深度麻醉的猫中,根据Ⅱ类肌传入纤维诱发的群体兴奋性突触后电位(场电位)单突触成分的抑制程度来估计突触前抑制的程度。中间带场电位面积的减小比背角大得多且持续时间更长,在中间带场电位常被消除,而在背角场电位减小到约三分之二。在相同位置由其他传入纤维诱发的场电位的突触前抑制则弱得多。对α运动神经元的细胞内记录显示,由Ⅱ类传入纤维诱发的短潜伏期兴奋性突触后电位和抑制性突触后电位,会被有效抑制Ⅱ类起源中间带场电位的条件刺激显著降低。本研究结果得出结论,对传递至中间带中间神经元的突触前强抑制,可选择性抑制由这些中间神经元介导的Ⅱ类肌传入纤维对α和γ运动神经元的双突触作用,并有利于这些传入纤维的多突触作用。