三叉神经主核和脊髓核对大鼠丘脑VPM神经元感受野特性的贡献。

Marc H Friedberg, Stefan M Lee, Ford F Ebner
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引用次数: 26

摘要

来自支配大鼠一侧面部须囊的神经元的初级感觉信息主要通过脑干三叉神经复核的两个亚核传递到对侧丘脑。本实验旨在分离三叉神经主核(PrV)和脊髓三叉神经核(SpV)对成年大鼠丘脑腹侧后内侧核(VPM)须诱发反应的作用。通过感受野大小、模态潜伏期、反应概率和反应幅度等指标,定量研究了聚氨酯麻醉下VPM神经元对对侧须受控刺激的胞外单单元反应。SpV对VPM细胞反应的贡献是通过制造PrV的kainic酸损伤来分离的。PrV的贡献是通过在SpV越过中线之前切断由SpV产生的三叉丘脑轴突来确定的。在PrV被破坏后,SpV通路单独产生VPM神经元的大感受野(平均9.04个须)和长潜伏期(平均11.07 ms)反应。相比之下,单独输入PrV (SpV断开)产生较小的感受野(平均:1.06须)和更短的潜伏期(平均:6.74 ms)响应。在两种通路完整的情况下,平均感受野大小为2.4须,峰(模态)反应潜伏期为7.33 ms。两种通路完整时的反应明显不同于单独操作的任何一种通路。反应的概率和幅度也有相同的趋势。我们得出结论,单个VPM神经元的正常反应代表了通过PrV和SpV途径传递的输入活动的整合。
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The contribution of the principal and spinal trigeminal nuclei to the receptive field properties of thalamic VPM neurons in the rat.

Primary sensory information from neurons innervating whisker follicles on one side of a rat's face is relayed primarily through two subnuclei of the brainstem trigeminal complex to the contralateral thalamus. The present experiments were undertaken to separate the contribution of the principal trigeminal nucleus (PrV) from that of the spinal trigeminal nucleus (SpV) to whisker evoked responses in the ventral posterior medial (VPM) nucleus in the adult rat thalamus. Extracellular single-unit responses of VPM neurons to controlled stimulation of the contralateral whiskers under urethane anesthesia were quantified in terms of receptive field size, modal latency, response probability and response magnitude. The SpV contribution to VPM cell responses was isolated by making kainic acid lesions of the PrV. The PrV contribution was ascertained by cutting the trigeminothalamic axons arising from SpV just before they cross the midline. After destruction of the PrV, the SpV pathway alone produced large receptive fields (mean: 9.04 whiskers) and long latency (mean: 11.07 ms) responses from VPM neurons. In contrast, PrV input alone (SpV disconnected) generated small receptive fields (mean: 1.06 whiskers) and shorter latency (mean: 6.74 ms) responses. With both pathways intact the average receptive field size was 2.4 whiskers and peak (modal) response latency was 7.33 ms. The responses with both pathways intact were significantly different from either pathway operating in isolation. Response probability and magnitude followed the same trend. We conclude that normal responses of individual VPM neurons represent the integration of input activity transmitted through both PrV and SpV pathways.

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