Institute for Cell Biology and Neuroscience, University of Frankfurt, Siesmayerstr. 70A, Frankfurt, Germany.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2011 May;197(5):605-13. doi: 10.1007/s00359-010-0530-8. Epub 2010 May 6.
Target-distance computation by cortical neurons sensitive to echo delay is an essential characteristic of the auditory system of insectivorous bats. To assess if functional requirements such as detection of small insects versus larger stationary surfaces of plants are reflected in cortical properties, we compare delay-tuned neurons in a frugivorous (C. perspicillata, CP) and an insectivorous (P. parnellii, PP) bat species that belong to related families within the superfamily of Noctilionoidea. The bandwidth and shape of delay-tuning curves and the range of characteristic delays are similar in both species and hence are not related to different echolocation strategies. Most units respond at 2-6 ms echo delay with most sensitive thresholds of 20-30 dB SPL. In CP, units tuned to delays >12 ms are slightly more abundant and are more sensitive than in PP. All delay-tuned neurons in CP reliably respond to single pure-tone stimuli, whereas such responses are only observed in 49% of delay-tuned units in PP. The cortical representation of echo delay (chronotopy) covers a larger area in CP but is less precise than described in PP. Since chronotopy is absent in certain other insectivorous bat species, it is open if these differences in topography are related to echolocation behaviour.
对回声延迟敏感的皮层神经元进行目标距离计算是食虫蝙蝠听觉系统的一个重要特征。为了评估诸如检测小昆虫与植物较大静止表面等功能要求是否反映在皮层特性中,我们比较了属于夜鹰超科的相关科的两种食虫蝙蝠(C. perspicillata,CP)和一种食虫蝙蝠(P. parnellii,PP)的延迟调谐神经元。两种物种的延迟调谐曲线的带宽和形状以及特征延迟范围相似,因此与不同的回声定位策略无关。大多数单位在 2-6 毫秒的回声延迟处响应,最敏感的阈值为 20-30 dB SPL。在 CP 中,调谐至延迟>12 毫秒的单位略为丰富,比在 PP 中更敏感。CP 中的所有延迟调谐神经元都可靠地对单个纯音刺激作出反应,而在 PP 中,只有 49%的延迟调谐单元观察到这种反应。回声延迟的皮层表示(时程拓扑)在 CP 中覆盖更大的区域,但不如在 PP 中描述的那样精确。由于在某些其他食虫蝙蝠物种中不存在时程拓扑,因此这些拓扑差异是否与回声定位行为有关尚不清楚。