...
首页> 外文期刊>Current Biology: CB >Candidate Neural Substrates for Off-Edge Motion Detection in Drosophila
【24h】

Candidate Neural Substrates for Off-Edge Motion Detection in Drosophila

机译:果蝇边缘运动检测的候选神经基质

获取原文
获取原文并翻译 | 示例

摘要

Background: In the fly's visual motion pathways, two cell types-T4 and T5-are the first known relay neurons to signal small-field direction-selective motion responses [1]. These cells then feed into large tangential cells that signal wide-field motion. Recent studies have identified two types of columnar neurons in the second neuropil, or medulla, that relay input to 14 from L1, the ON-channel neuron in the first neuropil, or lamina, thus providing a candidate substrate for the elementary motion detector (EMD) [2]. Interneurons relaying the OFF channel from L1's partner, L2, to T5 are so far not known, however. Results: Here we report that multiple types of transmedulla (Tm) neurons provide unexpectedly complex inputs to T5 at their terminals in the third neuropil, or lobula. From the L2 pathway, single-column input comes from Tm1 and Tm2 and multiple-column input from Tm4 cells. Additional input to T5 comes from Tm9, the medulla target of a third lamina interneuron, L3, providing a candidate substrate for L3's combinatorial action with L2 [3]. Most numerous, Tm2 and Tm9's input synapses are spatially segregated on T5's dendritic arbor, providing candidate anatomical substrates for the two arms of a 15 EMD circuit; Tm1 and Tm2 provide a second. Transcript profiling indicates that T5 expresses both nicotinic and muscarinic cholinoceptors, qualifying T5 to receive cholinergic inputs from Tm9 and Tm2, which both express choline acetyltransferase (ChAT). Conclusions: We hypothesize that T5 computes small-field motion signals by integrating multiple cholinergic Tm inputs using nicotinic and muscarinic cholinoceptors.
机译:背景:在果蝇的视觉运动路径中,两种细胞类型-T4和T5是第一个已知的中继神经元,用于发出小视野方向选择性运动响应[1]。然后,这些单元会馈入大的切向单元,从而发出广域运动信号。最近的研究已经确定了第二种神经柱或延髓中的两种柱状神经元,它们将输入信号从L1传递到14位,即第一种神经柱或椎板中的通道内神经元,从而为基本运动检测器(EMD)提供了候选基质)[2]。但是,迄今为止尚不知道将L1的伙伴L2的OFF通道中继到T5的中间神经元。结果:在这里我们报告说,多种类型的跨髓(Tm)神经元在第三神经桩或小叶的末端向T5提供了意想不到的复杂输入。从L2路径来看,单列输入来自Tm1和Tm2,多列输入来自Tm4细胞。 T5的附加输入来自Tm9,这是第三层中层神经L3的延髓靶标,为L3与L2的联合作用提供了候选底物[3]。 Tm2和Tm9的输入突触在空间上隔离在T5的树突状乔木上,为15个EMD电路的两个臂提供了候选的解剖学底物。 Tm1和Tm2提供了第二个。成绩单分析表明,T5同时表达烟碱型和毒蕈碱型胆碱受体,使T5能够从Tm9和Tm2接收胆碱能输入,后者均表达胆碱乙酰基转移酶(ChAT)。结论:我们假设T5通过使用烟碱和毒蕈碱型胆碱受体整合多个胆碱能Tm输入来计算小场运动信号。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号