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果蝇视觉中间神经元对旋转光流调谐的稳健性。

Robustness of the tuning of fly visual interneurons to rotatory optic flow.

作者信息

Karmeier Katja, Krapp Holger G, Egelhaaf Martin

机构信息

Bielefeld University, Lehrstuhl für Neurobiologie, 33501 Bielefeld, Germany.

出版信息

J Neurophysiol. 2003 Sep;90(3):1626-34. doi: 10.1152/jn.00234.2003. Epub 2003 May 7.

Abstract

The sophisticated receptive field organization of motion-sensitive tangential cells in the visual system of the blowfly Calliphora vicina matches the structure of particular optic flow fields. Hypotheses on the tuning of particular tangential cells to rotatory self-motion are based on local motion measurements. So far, tangential cells have never been tested with global optic flow stimuli. Therefore we measured the responses of an identifiable neuron, the V1 tangential cell, to wide-field motion stimuli mimicking optic flow fields similar to those the fly encounters during particular self-motions. The stimuli were generated by a "planetarium-projector," casting a pattern of moving light dots on a large spherical projection screen. We determined the tuning curves of the V1-cell to optic flow fields as induced by the animal during 1) rotation about horizontally aligned body axes, 2) upward/downward translation, and 3) a combination of both components. We found that the V1-cell does not respond as specifically to self-rotations, as had been concluded from its receptive field organization. The neuron responds strongly to upward translation and its tuning to rotations is much coarser than expected. The discrepancies between the responses to global optic flow and the predictions based on the receptive field organization are likely due to nonlinear integration properties of tangential neurons. Response parameters like orientation, shape, and width of the tuning curve are largely unaffected by changes in rotation velocity or a superposition of rotational and translational optic flow.

摘要

红头丽蝇(Calliphora vicina)视觉系统中对运动敏感的切向细胞复杂的感受野组织与特定光流场的结构相匹配。关于特定切向细胞对旋转自我运动的调谐假设是基于局部运动测量得出的。到目前为止,切向细胞从未接受过全局光流刺激的测试。因此,我们测量了一个可识别的神经元——V1切向细胞对模拟光流场的宽视野运动刺激的反应,这些光流场类似于苍蝇在特定自我运动过程中遇到的光流场。刺激由一台“天文馆投影仪”产生,在一个大的球形投影屏幕上投射移动光点的图案。我们确定了V1细胞对动物在以下三种情况下诱导产生的光流场的调谐曲线:1)绕水平对齐的身体轴旋转,2)向上/向下平移,3)两种成分的组合。我们发现,V1细胞对自我旋转的反应并不像从其感受野组织得出的结论那样具有特异性。该神经元对向上平移有强烈反应,其对旋转的调谐比预期的要粗糙得多。对全局光流的反应与基于感受野组织的预测之间的差异可能是由于切向神经元的非线性整合特性。调谐曲线的方向、形状和宽度等反应参数在很大程度上不受旋转速度变化或旋转和平移光流叠加的影响。

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