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脊髓对丘脑腹外侧核神经元的输入:直接脊髓丘脑效应的证据。

Spinal input to thalamic VL neurons: evidence for direct spinothalamic effects.

作者信息

Mackel R, Iriki A, Brink E E

机构信息

Rockefeller University, New York, New York 10021.

出版信息

J Neurophysiol. 1992 Jan;67(1):132-44. doi: 10.1152/jn.1992.67.1.132.

Abstract
  1. The postsynaptic actions of afferents ascending in the ventrolateral quadrant and dorsal columns of the spinal cord were studied in neurons in the ventrolateral nucleus of the thalamus (VL) (n = 138) by use of intracellular recording procedures. Neurons were identified by their monosynaptic input from the cerebellum and, when possible, their antidromic activation from the motor cortex. The possible occurrence of monosynaptic transmission along spinothalamic fibers was investigated by estimating the intrathalamic delay time of postsynaptic responses and by examining the occurrence of temporal facilitation to double-shock stimulation. The experiments were performed in cats anesthetized with alpha-chloralose. 2. The majority of neurons (86%) responded with excitatory or inhibitory postsynaptic potentials to stimulation of the ascending paths. The response latencies of excitation on stimulation of the ventral quadrants at C3 ranged from 2.9 to 18 ms. Evidence for monosynaptic excitation after stimulation of (spinothalamic) afferents ascending in the ventrolateral quadrants was obtained for a number of neurons (n = 30). For these neurons, estimated intrathalamic delays were less than 1 ms and/or the neurons did not display temporal facilitation to double shocks. All the shortest latency responses (from C3) showed evidence of monosynaptic transmission. It is estimated that approximately 19-39% of neurons sampled may receive monosynaptic input. The spinal conduction velocities of the direct projections ranged from 10 to 35 m/s (median 20 m/s). 3. Much of the ascending input was mediated polysynaptically. For afferents ascending in the ventrolateral quadrant, estimated intrathalamic delays were greater than 1.5 ms and/or the postsynaptic responses displayed temporal facilitation to double shocks. The shortest latency from C3 of a polysynaptic response was 5 ms. Spatial interactions were observed between polysynaptic inputs from the ventrolateral quadrants and the dorsal columns, indicating that at least some of the pathways to VL are shared. 4. The data show that many neurons in the VL receive input ascending from the spinal cord via direct and indirect routes. Somatosensory information reaching VL could serve to adjust, during the course of movement execution, the cerebellar commands relayed by VL to the motor cortex.
摘要
  1. 采用细胞内记录方法,在丘脑腹外侧核(VL)的神经元(n = 138)中研究了脊髓腹外侧象限和背柱中上行传入纤维的突触后作用。通过小脑的单突触输入以及在可能的情况下通过运动皮层的逆向激活来识别神经元。通过估计突触后反应的丘脑内延迟时间以及检查对双脉冲刺激的时间易化现象,研究了沿脊髓丘脑束纤维单突触传递的可能性。实验在α-氯醛糖麻醉的猫身上进行。2. 大多数神经元(86%)对上行通路的刺激产生兴奋性或抑制性突触后电位。在C3水平刺激腹侧象限时,兴奋的反应潜伏期为2.9至18毫秒。对于一些神经元(n = 30),在刺激腹外侧象限中上行的(脊髓丘脑束)传入纤维后获得了单突触兴奋的证据。对于这些神经元,估计的丘脑内延迟小于1毫秒和/或神经元对双脉冲不表现出时间易化。所有最短潜伏期反应(来自C3)均显示出单突触传递的证据。据估计,所采样的神经元中约19 - 39%可能接受单突触输入。直接投射的脊髓传导速度范围为10至35米/秒(中位数为20米/秒)。3. 许多上行输入是多突触介导的。对于在腹外侧象限中上行的传入纤维,估计的丘脑内延迟大于1.5毫秒和/或突触后反应对双脉冲表现出时间易化。多突触反应从C3起的最短潜伏期为5毫秒。在来自腹外侧象限和背柱的多突触输入之间观察到空间相互作用,表明至少一些到VL的通路是共享的。4. 数据表明,VL中的许多神经元通过直接和间接途径接收来自脊髓的上行输入。到达VL的躯体感觉信息可在运动执行过程中用于调整由VL中继至运动皮层的小脑指令。

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