Matsuyama Kiyoji, Jankowska Elzbieta
Department of Physiology and Pharmacology, Göteborg University, 405 30 Göteborg, Sweden.
J Neurophysiol. 2004 Mar;91(3):1183-92. doi: 10.1152/jn.00896.2003.
The aims of the study were twofold: (1) to verify the hypothesis that neurons in the fastigial nucleus excite and inhibit hindlimb alpha-motoneurons and (2) to determine both the supraspinal and spinal relays of these actions. Axons of fastigial neurons were stimulated at the level of their decussation in the cerebellum, within the hook bundle of Russell, in deeply anesthetized cats with only the right side of the spinal cord intact. The resulting excitatory postsynaptic potentials and inhibitory postsynaptic potentials were analyzed in motoneurons on the left side of the lumbar enlargement. Postsynaptic potentials evoked by the first effective stimulus were induced at latencies <2 ms from descending volleys and <1 ms from interneuronally relayed volleys, indicating a trisynaptic coupling between the fastigial neurons and alpha-motoneurons, via commissural interneurons on the right side. Cerebellar stimulation facilitated the synaptic actions of both vestibulospinal and reticulospinal tract fibers. However, the study leads to the conclusion that trisynaptic fastigial actions are mediated via vestibulospinal rather than reticulospinal tract fibers [stimulated within the lateral vestibular nucleus (LVN) and the medial longitudinal fascicle (MLF), respectively]. This is indicated firstly by collision between descending volleys induced by cerebellar stimulation and volleys evoked by LVN stimuli but not by MLF stimuli. Second, similar cerebellar actions were evoked before and after a transection of MLF. Mutual facilitation between the fastigial and reticulospinal, as well as between the fastigial and vestibulospinal actions, could be due to the previously reported integration of descending vestibulospinal and reticulospinal commands by spinal commissural interneurons.
(1)验证小脑顶核神经元兴奋和抑制后肢α运动神经元的假说;(2)确定这些作用的脊髓上和脊髓中继。在仅右侧脊髓完整的深度麻醉猫中,于小脑内顶核神经元轴突交叉水平,即罗素钩束内进行刺激。对腰膨大左侧运动神经元产生的兴奋性突触后电位和抑制性突触后电位进行分析。第一个有效刺激诱发的突触后电位,其潜伏期在下行冲动刺激下<2毫秒,在中间神经元中继冲动刺激下<1毫秒,表明顶核神经元与α运动神经元之间通过右侧连合中间神经元存在三突触耦合。小脑刺激促进了前庭脊髓束和网状脊髓束纤维的突触作用。然而,该研究得出结论,三突触顶核作用是通过前庭脊髓束而非网状脊髓束纤维介导的[分别在前庭外侧核(LVN)和内侧纵束(MLF)内刺激]。这首先由小脑刺激诱发的下行冲动与LVN刺激诱发的冲动之间的碰撞所表明,而与MLF刺激诱发的冲动之间无碰撞。其次,在MLF横断前后诱发了相似的小脑作用。顶核与网状脊髓束之间以及顶核与前庭脊髓束作用之间的相互促进,可能是由于先前报道的脊髓连合中间神经元对下行前庭脊髓束和网状脊髓束指令的整合。