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Design principles of the sparse coding network and the role of sister cells in the olfactory system of Drosophila

机译:稀疏编码网络的设计原理以及姐妹细胞在果蝇嗅觉系统中的作用

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摘要

Sensory systems face the challenge to represent sensory inputs in a way to allow easy readout of sensory information by higher brain areas. In the olfactory system of the fly drosopohila melanogaster, projection neurons (PNs) of the antennal lobe (AL) convert a dense activation of glomeruli into a sparse, high-dimensional firing pattern of Kenyon cells (KCs) in the mushroom body (MB). Here we investigate the design principles of the olfactory system of drosophila in regard to the capabilities to discriminate odor quality from the MB representation and its robustness to different types of noise. We focus on understanding the role of highly correlated homotypic projection neurons (“sister cells”) found in the glomeruli of flies. These cells are coupled by gap-junctions and receive almost identical sensory inputs, but target randomly different KCs in MB. We show that sister cells might play a crucial role in increasing the robustness of the MB odor representation to noise. Computationally, sister cells thus might help the system to improve the generalization capabilities in face of noise without impairing the discriminability of odor quality at the same time.
机译:感觉系统面临的挑战是如何以较高的大脑区域轻松读出感觉信息的方式来表示感觉输入。在蝇蝇的嗅觉系统中,触角叶(AL)的投射神经元(PNs)将肾小球的密集激活转变为蘑菇体(MB)中Kenyon细胞(KCs)的稀疏高维射击模式。在这里,我们研究果蝇嗅觉系统的设计原理,以区分MB表示的气味质量及其对不同类型噪声的鲁棒性。我们专注于了解在蝇的肾小球中发现的高度相关的同型投射神经元(“姐妹细胞”)的作用。这些细胞通过间隙连接而耦合,并接收几乎相同的感觉输入,但是以MB为目标随机地不同的KC。我们表明姐妹细胞可能在增加MB气味表示对噪声的鲁棒性中起关键作用。通过计算,姐妹细胞因此可以帮助系统在面对噪声的同时提高泛化能力,同时又不损害气味质量的可分辨性。

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