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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Summation between acoustic and trigeminal stimuli evoking startle.
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Summation between acoustic and trigeminal stimuli evoking startle.

机译:令人震惊的听觉和三叉神经刺激之间的总和。

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Electrical stimulation of the spinal trigeminal pathway evokes a short-latency startle-like response in rats. To explore the relationship between acoustic and tactile systems mediating startle, we studied temporal summation between pairs of startle-evoking stimuli in awake rats by varying the interstimulus interval. The stimuli were: (i) two noise bursts; (ii) two unilateral electrical stimuli near the principal nucleus of the trigeminal nerve; (iii) electrical stimulation of the left and right trigeminal nucleus; or (iv) a noise burst and unilateral stimulation of the trigeminal nucleus. Following two noise bursts, the amplitude of startle increased as the interval increased from 0 to 4 ms, then declined smoothly as the interval increased to 15 ms. Unilateral stimulation of the trigeminal nucleus resulted in a sharper summation effect, with maximal summation at 2 ms, and refractory periods estimated at 0.4-0.8 ms. Bilateral stimulation of the trigeminal nucleus resulted in broader summation without a refractory period, and maximal summation when the stimuli on both sides of the trigeminal nucleus were presented simultaneously. The combination of acoustic and trigeminal stimulation was most effective in enhancing startle amplitudes, and summation peaked when the noise burst preceded the trigeminal stimulation by 5 ms. Similarly, electromyogram latencies measured in the hindlimb were 3-4 ms shorter for trigeminal stimulation than for the noise burst. Startle appears to be optimally activated by simultaneous acoustic and tactile stimuli, as occurs during head blows.
机译:脊髓三叉神经通路的电刺激在大鼠中引起短时惊吓样反应。为了探索介导惊吓的听觉和触觉系统之间的关系,我们通过改变刺激间隔来研究清醒大鼠中的惊醒诱发对之间的时间求和。刺激是:(i)两个噪声爆发; (ii)三叉神经主核附近的两个单侧电刺激; (iii)电刺激左右三叉神经核;或(iv)三叉神经核的噪声爆发和单方面刺激。在两次噪声突发之后,惊吓的幅度随着间隔从0到4 ms的增加而增加,然后随着间隔增加到15 ms的变化而平稳下降。三叉神经核的单侧刺激导致更明显的求和效果,最大求和在2 ms处,不应期估计在0.4-0.8 ms。三叉神经核的双边刺激导致更宽泛的累加而没有不应期,并且当同时出现三叉神经核两侧的刺激时,最大累加。声音刺激和三叉神经刺激相结合最有效地增强了惊吓幅度,当噪声突发在三叉神经刺激之前5 ms时,总和达到峰值。同样,三叉神经刺激在后肢中测得的肌电图潜伏期比噪声爆发短3-4毫秒。惊吓似乎是通过同时发声和触觉刺激来最佳激活的,就像在头部打击时发生的那样。

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