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首页> 外文期刊>The Journal of Experimental Biology >An analysis of the relationship between the response characteristics and topography of directional and non-directional auditory neurons in the torus semicircularis of the rainbow trout
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An analysis of the relationship between the response characteristics and topography of directional and non-directional auditory neurons in the torus semicircularis of the rainbow trout

机译:虹鳟圆环半圆形定向和非定向听觉神经元的响应特征与拓扑关系的分析

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The response characteristics of auditory neurons in the multimodal midbrain torus semicircularis of rainbow trout were analyzed to examine their topography and functional differences. This analysis included the localization of recording sites, the measurement of spontaneous activity, the ratio of transient/sustained activity, and the synchronization, latency, preferred direction and directional range of the response. On average, units with a directionally selective (DS) response are positioned 60 mu m more dorsally than other auditory units. Directionally selective units usually have a higher response rate, a higher transient/sustained activity ratio and are better synchronized, Auditory units encountered within the same electrode track tend to be either all DS or all non-DS, Within a track, there is no uniformity of the response characteristics observed except that the preferred direction of DS units appears to be the same. The anatomical stratification of the torus, containing 66 000 somata (5-10 mu m in diameter), does not match the electrophysiologically observed vertical distribution of functionally distinct units. On the basis of the topographical distribution of response characteristics, two types of well-synchronized DS units can be distinguished, hypothetically representing separate channels for the processing of acoustic motion and (mainly) pressure information. A third type of DS unit which receives input from both these channels and actually encodes the source direction uniquely for all directions is postulated. [References: 47]
机译:分析虹鳟鱼多峰中脑半圆环半圆形听觉神经元的响应特征,以检查其形态和功能差异。该分析包括记录位点的定位,自发活动的测量,瞬时/持续活动的比率以及响应的同步,潜伏期,首选方向和方向范围。平均而言,具有方向选择性(DS)响应的单元的背侧位置比其他听觉单元多60微米。方向选择单元通常具有较高的响应率,较高的瞬态/持续活动比,并且同步性更好,在同一条电极轨道上遇到的听觉单元往往是全部DS或全部非DS,在一条轨道内没有统一性除了DS单元的优选方向看起来相同之外,观察到的响应特性的变化。圆环的解剖分层,包含66 000个躯体(直径5-10微米),与功能上不同的单元的电生理观察到的垂直分布不匹配。根据响应特性的地形分布,可以区分两种类型的同步良好的DS单元,假设它们代表用于处理声运动和(主要是)压力信息的单独通道。假定了第三种类型的DS单元,它从这两个通道接收输入并实际上对所有方向唯一地编码源方向。 [参考:47]

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