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非洲爪蟾中空间和时间表面波参数的中枢表示。

Central representation of spatial and temporal surface wave parameters in the African clawed frog.

机构信息

Institute of Biology, Humboldt University, Invalidenstr. 43, 10115 Berlin, Germany.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2012 Nov;198(11):797-815. doi: 10.1007/s00359-012-0749-7. Epub 2012 Sep 14.

Abstract

Xenopus laevis employs mechano-sensory lateral lines to, for instance, capture arthropods on the surface of turbid waters with poor visibility based on incoming wave signals. To characterise central representations of surface waves emitted from different locations, responses to several wave parameters were extracellularly recorded across brainstem, midbrain and thalamic areas. Overall, 339 of 411 statistically analysed responses showed significantly altered spike rates during the presentation of surface waves. Of these units, 45.1% were obtained in the torus semicircularis including its laminar subnucleus (23.3%) that is known to process auditory cues. Wave parameters contributing to central object representations were indicated by response rates that systematically varied with amplitude (76.3% of 160 tested units), frequency (74.4% of 270 tested units), source angle (93.7% of 79 tested units), or source distance (63.8% of 218 tested units). Map-like parameter representations were rather diffuse, yet an increased fraction of units tuned to frontal source angles was observed at deeper tissue layers (>180 μm), and an increased fraction of best neuronal responses to low wave frequencies (≤25 Hz) at rostral midbrain sections. Responses to wave frequencies remained largely robust across tested unit samples independent of source angles, and distances (N = 62). In comparison, spatial response characteristics seemed fragile across different wave frequencies in 68.3% of 41 recordings.

摘要

非洲爪蟾利用机械感觉侧线,例如,根据传入的波信号,从不同位置发出的表面波的中央表示来捕获混浊水中的节肢动物。为了描述从中脑、中脑和丘脑区域记录的脑桥中记录的细胞外表面波的响应,以特征化表面波的中央表示。总体而言,在呈现表面波时,339 个中的 411 个统计分析的响应表现出明显改变的尖峰率。在包括其层状亚核(已知处理听觉线索的 23.3%)的半规管穹窿中获得了其中的 45.1%。对中央物体表示有贡献的波参数通过响应率表示,该响应率与振幅(160 个测试单元中的 76.3%),频率(270 个测试单元中的 74.4%),源角(79 个测试单元中的 93.7%)或源距离(218 个测试单元中的 63.8%)系统地变化。图状参数表示相当弥散,但在更深的组织层(> 180 μm)中观察到更多的对正面源角调谐的单元,在中脑头部区域中观察到更多的最佳神经元对低频波(≤25 Hz)的响应。响应对波频率的响应在很大程度上仍然不受源角度和距离(N = 62)的影响。相比之下,在 41 个记录中的 68.3%中,不同波频率的空间响应特征似乎脆弱。

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