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猫吻侧丘脑与不同听觉刺激之间短潜伏期辨别相关的单位活动模式。

Patterns of unit activity in the rostral thalamus of cats related to short-latency discrimination between different auditory stimuli.

作者信息

Woody C D, Gruen E, Melamed O, Chizhevsky V

机构信息

Brain Research Institute, UCLA Medical Center 90024.

出版信息

J Neurosci. 1991 Jan;11(1):48-58. doi: 10.1523/JNEUROSCI.11-01-00048.1991.

Abstract

Short-latency auditory-responsive units were found in the rostral thalamus of cats during performance of conditioned eyeblink responses (CRs) elicited discriminatively by a forward-paired, 70-dB-click conditioned stimulus (CS) as opposed to a backward-paired, 70-dB-hiss discriminative stimulus (DS). Discharges in response to the CS or DS were found in 57% of 138 units tested. Forty-one percent of units responding to the CS did so at latencies of less than 40 msec. After conditioning a discriminative CR to click CS, an increase in the ratio of CS-evoked activity to baseline activity was found relative to that before conditioning. This increase was attributable, in part, to a decrease in baseline activity and, in part, to an increase in the magnitude of response to the CS. These responses preceded early components of the electromyographically measured motor responses with latencies sufficient to contribute to initiation of the movement. After acquisition of the CR, the proportion of CS responsive units also increased. We conclude that this area of the thalamus, a region thought to support thalamocortical reverberatory activity, also functions to transmit short-latency auditory signals. Our evidence further suggests that this region may participate in the elicitation of conditioned responses by specific auditory stimuli and in discrimination between auditory stimuli of different significance.

摘要

在猫的条件性眨眼反应(CR)过程中,在其丘脑前部发现了短潜伏期听觉反应单元。该条件性眨眼反应是由一个70分贝的点击条件刺激(CS)与一个70分贝的嘶嘶声辨别刺激(DS)进行前向配对而有区别地引发的,而不是后向配对。在测试的138个单元中,有57%的单元对CS或DS有放电反应。对CS有反应的单元中,41%的单元反应潜伏期小于40毫秒。在对点击CS形成辨别性CR后,发现CS诱发活动与基线活动的比率相对于条件化前有所增加。这种增加部分归因于基线活动的减少,部分归因于对CS反应幅度的增加。这些反应在肌电图测量的运动反应的早期成分之前出现,其潜伏期足以促进运动的启动。在获得CR后,对CS有反应的单元比例也增加了。我们得出结论,丘脑的这个区域,一个被认为支持丘脑皮质回响活动的区域,也起到传递短潜伏期听觉信号的作用。我们的证据进一步表明,该区域可能参与特定听觉刺激引发的条件反应以及不同重要性听觉刺激之间的辨别。

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