School of Biological Sciences, University of Utah, Salt Lake City, UT 84103, USA.
School of Biological Sciences, University of Utah, Salt Lake City, UT 84103, USA.
Cell Rep. 2020 Sep 15;32(11):108138. doi: 10.1016/j.celrep.2020.108138.
The patterns of neuronal connectivity underlying multisensory integration, a fundamental property of many brains, remain poorly characterized. The Drosophila melanogaster mushroom body-an associative center-is an ideal system to investigate how different sensory channels converge in higher order brain centers. The neurons connecting the mushroom body to the olfactory system have been described in great detail, but input from other sensory systems remains poorly defined. Here, we use a range of anatomical and genetic techniques to identify two types of input neuron that connect visual processing centers-the lobula and the posterior lateral protocerebrum-to the dorsal accessory calyx of the mushroom body. Together with previous work that described a pathway conveying visual information from the medulla to the ventral accessory calyx of the mushroom body, our study defines a second, parallel pathway that is anatomically poised to convey information from the visual system to the dorsal accessory calyx.
多感觉整合是许多大脑的基本特性,但其基础的神经元连接模式仍未被充分描述。果蝇的蘑菇体(一种联想中枢)是一个理想的系统,可以研究不同的感觉通道如何在高级脑中枢汇聚。连接蘑菇体和嗅觉系统的神经元已经被详细描述,但其他感觉系统的输入仍然定义不清。在这里,我们使用一系列解剖学和遗传学技术来鉴定两种类型的输入神经元,它们将视觉处理中心——小脑中脑复合体和后外侧protocerebrum——连接到蘑菇体的背侧附属心角。结合先前描述从medulla 到蘑菇体的腹侧附属心角传递视觉信息的通路的工作,我们的研究定义了第二个平行通路,该通路在解剖学上准备将视觉信息从视觉系统传递到背侧附属心角。