Institute of Systems Neuroscience, National Tsing Hua University, Hsinchu, Taiwan.
Brain Research Center, National Tsing Hua University, Hsinchu, Taiwan.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2023 Jul;209(4):721-735. doi: 10.1007/s00359-023-01615-z. Epub 2023 Feb 13.
The recent discovery of the head-direction (HD) system in fruit flies has provided unprecedented insights into the neural mechanisms of spatial orientation. Despite the progress, the neural substance of global inhibition, an essential component of the HD circuits, remains controversial. Some studies suggested that the ring neurons provide global inhibition, while others suggested the Δ7 neurons. In the present study, we provide evaluations from the theoretical perspective by performing systematic analyses on the computational models based on the ring-neuron (R models) and Δ7-neurons (Delta models) hypotheses with modifications according to the latest connectomic data. We conducted four tests: robustness, persistency, speed, and dynamical characteristics. We discovered that the two models led to a comparable performance in general, but each excelled in different tests. The R Models were more robust, while the Delta models were better in the persistency test. We also tested a hybrid model that combines both inhibitory mechanisms. While the performances of the R and Delta models in each test are highly parameter-dependent, the Hybrid model performed well in all tests with the same set of parameters. Our results suggest the possibility of combined inhibitory mechanisms in the HD circuits of fruit flies.
最近在果蝇中发现的头方向(HD)系统为空间定向的神经机制提供了前所未有的见解。尽管取得了进展,但全球抑制的神经物质——HD 回路的一个基本组成部分——仍然存在争议。一些研究表明,环神经元提供了全局抑制,而另一些研究则表明 Δ7 神经元提供了全局抑制。在本研究中,我们从理论角度进行了评估,根据最新的连接组学数据,对基于环神经元(R 模型)和 Δ7 神经元(Delta 模型)假设的计算模型进行了系统分析。我们进行了四项测试:鲁棒性、持久性、速度和动力学特性。我们发现,这两种模型在一般情况下表现相当,但在不同的测试中各有优劣。R 模型更稳健,而 Delta 模型在持久性测试中表现更好。我们还测试了一种结合两种抑制机制的混合模型。虽然 R 和 Delta 模型在每个测试中的性能高度依赖于参数,但混合模型在所有测试中都表现良好,使用的是相同的参数集。我们的结果表明,在果蝇的 HD 回路中可能存在组合抑制机制。