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前脑核团中的电刺激引发鸣禽习得的发声模式。

Electrical stimulation in forebrain nuclei elicits learned vocal patterns in songbirds.

作者信息

Vicario D S, Simpson H B

机构信息

Rockefeller University, New York, New York 10021, USA.

出版信息

J Neurophysiol. 1995 Jun;73(6):2602-7. doi: 10.1152/jn.1995.73.6.2602.

Abstract
  1. Microstimulation (trains of biphasic current pulses at 50-400 Hz lasting 2-4 s) was delivered unilaterally to known vocal control areas in the brains of zebra finches and canaries to elicit vocalizations. 2. Simple vocalizations were elicited from the midbrain, and the lowest thresholds were obtained from the dorsomedial nucleus of the intercollicular complex (DM). 3. Vocalizations elicited from forebrain vocal control nuclei higher vocal center (HVC) and robustus archistriatalis (RA) were complex, with features specific not only to the species, but to the individual bird's own learned song. 4. Complex acoustic features depended on innervation of the bird's vocal organ and were lost when the tracheosyringeal nerve was cut. 5. We suggest that stimulation of the forebrain vocal pathway activates a dedicated neural circuit that generates the temporal structure of song and whose specific pattern of activity is programmed during sensorimotor learning in each individual.
摘要
  1. 对斑胸草雀和金丝雀大脑中已知的发声控制区域进行单侧微刺激(50 - 400赫兹的双相电流脉冲串,持续2 - 4秒)以引发发声。2. 从中脑引发了简单发声,最低阈值出现在间丘复合体背内侧核(DM)。3. 从前脑发声控制核团高级发声中枢(HVC)和古纹状体粗核(RA)引发的发声很复杂,不仅具有特定物种的特征,还具有个体鸟自身学习歌曲的特征。4. 复杂的声学特征取决于鸟类发声器官的神经支配,当气管鸣管神经被切断时这些特征就会消失。5. 我们认为,对前脑发声通路的刺激激活了一个专门的神经回路,该回路产生歌曲的时间结构,其特定的活动模式在每个个体的感觉运动学习过程中被编程。

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