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两种昆虫的头部方向回路。

The head direction circuit of two insect species.

机构信息

School of Informatics, University of Edinburgh, Edinburgh, United Kingdom.

Lund Vision Group and NanoLund, Lund University, Lund, Sweden.

出版信息

Elife. 2020 Jul 6;9:e53985. doi: 10.7554/eLife.53985.

Abstract

Recent studies of the Central Complex in the brain of the fruit fly have identified neurons with activity that tracks the animal's heading direction. These neurons are part of a neuronal circuit with dynamics resembling those of a ring attractor. The homologous circuit in other insects has similar topographic structure but with significant structural and connectivity differences. We model the connectivity patterns of two insect species to investigate the effect of these differences on the dynamics of the circuit. We illustrate that the circuit found in locusts can also operate as a ring attractor but differences in the inhibition pattern enable the fruit fly circuit to respond faster to heading changes while additional recurrent connections render the locust circuit more tolerant to noise. Our findings demonstrate that subtle differences in neuronal projection patterns can have a significant effect on circuit performance and illustrate the need for a comparative approach in neuroscience.

摘要

最近对果蝇大脑中的中央复合体的研究已经确定了具有跟踪动物头部方向的活动的神经元。这些神经元是具有类似于环吸引子动力学的神经元回路的一部分。其他昆虫中的同源回路具有相似的地形结构,但具有显著的结构和连接差异。我们对两种昆虫物种的连接模式进行建模,以研究这些差异对回路动力学的影响。我们说明,在蝗虫中发现的回路也可以作为一个环吸引子运作,但是抑制模式的差异使果蝇回路能够更快地对头部变化做出反应,而额外的递归连接则使蝗虫回路对噪声更具耐受性。我们的研究结果表明,神经元投射模式的细微差异会对回路性能产生重大影响,并说明了在神经科学中采用比较方法的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0399/7419142/b9a9faa1fd7f/elife-53985-fig1.jpg

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