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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Comparisons of dorsal and ventral hippocampus cornu ammonis region 1 pyramidal neuron activity during trace eye-blink conditioning in the rabbit.
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Comparisons of dorsal and ventral hippocampus cornu ammonis region 1 pyramidal neuron activity during trace eye-blink conditioning in the rabbit.

机译:兔眼部眨眼调节过程中背侧和腹侧海马角膜氨1区锥体神经元活性的比较。

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摘要

Previous studies demonstrating a critical role of the hippocampus during trace eye-blink conditioning have focused primarily upon the dorsal portion of the structure. However, evidence suggests that a functional differentiation exists along the septotemporal axis of the hippocampus. In the present study, the activity of 2588 single cornu ammonis region 1 pyramidal neurons of the dorsal hippocampus and ventral hippocampus were recorded during trace and pseudo-eye-blink conditioning of the rabbit. Learning-related increases in dorsal hippocampus neuron firing rates were observed immediately prior to behavioral criterion, and increased over the course of training. Activation of dorsal hippocampus neurons during trace conditioning was also greater than that of ventral hippocampus neurons, including during the trace interval, in well-trained animals. An unexpected difference in the patterns of learning-related activity between hemispheres was also observed. Neurons of the dorsal hippocampus ipsilateral and contralateral to the trained eye, exhibiting significant increases in firing rate [rate increasing neurons], demonstrated the greatest magnitude of activation early and late in training, respectively. Rate increasing neurons of the dorsal hippocampus also exhibited a greater diversity of response profiles, with 69% of dorsal hippocampus rate increasing neurons exhibiting significant increases in firing rate during the conditioned stimulus and/or trace intervals, compared with only 8% of ventral hippocampus rate increasing neurons (the remainder of which were significantly responsive during only the unconditioned stimulus and/or post-unconditioned stimulus intervals). Only modest learning-related activation of ventral hippocampus neurons was observed, reflected as an increase in conditioning stimulus-elicited rate increasing neuron response magnitudes over the course of training. No differences in firing rate between dorsal hippocampus and ventral hippocampus neurons during a 1-day pre-training habituation session were observed. Thus, dorsal hippocampus activation is more robust, suggesting a more substantial role for these neurons in the processing of temporal information during trace eye-blink conditioning.
机译:先前的研究表明海马在微量眨眼条件下的关键作用主要集中在结构的背侧部分。但是,有证据表明,沿着海马间隔颞轴存在功能分化。在本研究中,记录了家兔背海马和腹侧海马的2588个单个角膜氨化1区锥体神经元的活动。在行为标准之前立即观察到与学习有关的海马背神经元放电速率的增加,并且在训练过程中增加。在训练有素的动物中,痕量调节期间背海马神经元的激活也大于腹侧海马神经元,包括在痕迹间隔期间。还观察到半球之间与学习相关的活动的模式有意想不到的差异。受训眼的同侧和对侧背侧海马神经元,其放电率(速率增加的神经元)显着增加,分别在训练的早期和晚期表现出最大的激活程度。背侧海马速率增加的神经元也表现出更大的反应模式多样性,在条件性刺激和/或痕量间隔期间,背侧海马速率增加的神经元的放电率显着增加,而腹侧海马速率仅为8%增加的神经元(仅在无条件刺激和/或无条件刺激间隔后,其余神经元才有明显反应)。仅观察到了适度的与学习有关的腹侧海马神经元的激活,反映为在训练过程中条件刺激引起的速率增加,神经元反应幅度增加。在为期1天的训练前习惯训练过程中,未观察到背侧海马和腹侧海马神经元的放电率差异。因此,海马背侧的激活更强健,表明这些神经元在眨眼眨眼条件下的时间信息处理中具有更重要的作用。

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