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首页> 外文期刊>Journal of Neurophysiology >Electrosensory processing in Apteronotus albifrons: Implications for general and specific neural coding strategies across wave-type weakly electric fish species
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Electrosensory processing in Apteronotus albifrons: Implications for general and specific neural coding strategies across wave-type weakly electric fish species

机译:Apteronotus albifrons中的电感应处理:跨波浪型弱电鱼物种的一般和特定神经编码策略的含义。

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Understanding how the brain processes sensory input to generate behavior remains an important problem in neuroscience. Towards this end, it is useful to compare results obtained across multiple species to gain understanding as to the general principles of neural coding. Here we investigated hindbrain pyramidal cell activity in the weakly electric fish Apteronotus albifrons. We found strong heterogeneities when looking at baseline activity. Additionally, ON-and OFF-type cells responded to increases and decreases of sinusoidal and noise stimuli, respectively. While both cell types displayed band-pass tuning, OFF-type cells were more broadly tuned than their ON-type counterparts. The observed heterogeneities in baseline activity as well as the greater broadband tuning of OFF-type cells were both similar to those previously reported in other weakly electric fish species, suggesting that they constitute general features of sensory processing. However, we found that peak tuning occurred at frequencies ~15 Hz in A. albifrons, which is much lower than values reported in the closely related species Apteronotus leptorhynchus and the more distantly related species Eigenmannia virescens. In response to stimuli with time-varying amplitude (i.e., envelope), ON-and OFF-type cells displayed similar high-pass tuning curves characteristic of fractional differentiation and possibly indicate optimized coding. These tuning curves were qualitatively similar to those of pyramidal cells in the closely related species A. leptorhynchus. In conclusion, comparison between our and previous results reveals general and species-specific neural coding strategies. We hypothesize that differences in coding strategies, when observed, result from different stimulus distributions in the natural/social environment.
机译:理解大脑如何处理感觉输入以产生行为仍然是神经科学中的重要问题。为此,比较跨物种获得的结果对了解神经编码的一般原理很有用。在这里,我们研究了弱电鱼Apteronotus albifrons中的后脑锥体细胞活性。当查看基线活动时,我们发现强烈的异质性。另外,开和关型细胞分别响应正弦和噪声刺激的增加和减少。虽然两种电池类型均显示带通调谐,但关闭型电池比接通型电池更广泛地进行调谐。在基线活动中观察到的异质性以及OFF型细胞的更大的宽带调谐都与先前在其他弱电鱼物种中报道的相似,表明它们构成了感官加工的一般特征。但是,我们发现在A. albifrons中的峰值调谐发生在〜15 Hz的频率,这远低于密切相关的物种Apteronotus leptorhynchus和更远相关的物种Eigenmannia virescens中报道的值。响应于随时间变化的振幅(即包络线)的刺激,开和关型单元显示相似的分数微分高通调谐曲线,并可能指示优化的编码。这些调节曲线在质量上与紧密相关的物种A. leptorhynchus中的锥体细胞相似。总之,我们与先前结果的比较揭示了一般的和特定物种的神经编码策略。我们假设,当观察到编码策略时,其差异是由自然/社会环境中的不同刺激分布引起的。

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