Edgley S A, Jankowska E, Krutki P, Hammar I
Department of Anatomy, University of Cambridge, Cambridge CB2 3DY, UK.
J Physiol. 2003 Nov 1;552(Pt 3):961-74. doi: 10.1113/jphysiol.2003.048009. Epub 2003 Sep 8.
Previous studies have demonstrated that group II muscle afferents exert powerful actions on contralateral motoneurones and that these actions are mediated primarily via lamina VIII commissural interneurones. We examined whether dorsal horn interneurones also contribute to these actions, as they have been shown to contribute to the actions of group II afferents on ipsilateral motoneurones. We tested the susceptibility of IPSPs and EPSPs evoked from group II afferents in contralateral motoneurones to presynaptic inhibition as an indicator of the relative contribution of dorsal horn interneurones to these PSPs, since the monosynaptic activation of dorsal horn interneurones is more weakly and more briefly depressed by presynaptic inhibition than is the monosynaptic activation of lamina VIII and other intermediate zone and ventral horn interneurones. While the earliest components of IPSPs and EPSPs evoked by group II afferents were abolished by conditioning stimulation of group II afferents, consistent with them being evoked disynaptically by commissural interneurones, trisynaptic components of these PSPs were only partly reduced and are therefore attributed to dorsal horn interneurones. The same conditioning stimuli depressed the disynaptic excitation of lamina VIII commissural interneurones by group II afferents much less effectively than they depressed monosynaptic excitation, indicating that dorsal horn interneurones contribute to this disynaptic excitation. On the basis of these observations we conclude that that dorsal horn interneurones contribute to the late actions of group II muscle afferents on contralateral motoneurones through their disynaptic actions on commissural interneurones.
先前的研究表明,Ⅱ类肌传入纤维对同侧运动神经元有强大作用,且这些作用主要通过Ⅷ层连合中间神经元介导。我们研究了背角中间神经元是否也参与这些作用,因为已表明它们参与Ⅱ类传入纤维对同侧运动神经元的作用。我们测试了Ⅱ类传入纤维在对侧运动神经元中诱发的抑制性突触后电位(IPSPs)和兴奋性突触后电位(EPSPs)对突触前抑制的敏感性,以此作为背角中间神经元对这些突触后电位相对贡献的指标,因为与Ⅷ层及其他中间带和腹角中间神经元的单突触激活相比,背角中间神经元的单突触激活受突触前抑制的抑制作用更弱且更短暂。虽然Ⅱ类传入纤维诱发的IPSPs和EPSPs的最早成分通过Ⅱ类传入纤维的条件刺激被消除,这与它们由连合中间神经元双突触诱发一致,但这些突触后电位的三突触成分仅部分降低,因此归因于背角中间神经元。相同的条件刺激对Ⅱ类传入纤维对Ⅷ层连合中间神经元的双突触兴奋的抑制作用比对单突触兴奋的抑制作用要弱得多,这表明背角中间神经元参与了这种双突触兴奋。基于这些观察结果,我们得出结论,背角中间神经元通过其对连合中间神经元的双突触作用,参与了Ⅱ类肌传入纤维对同侧运动神经元的晚期作用。